81 Unfallstatistik
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Im "Programm für mehr Sicherheit im Straßenverkehr" des Bundesministeriums für Verkehr, Bau- und Wohnungswesen wird u.a. die Minderung des Gefahrenpotenzials schwerer Nutzfahrfahrzeuge als Priorität in der Verkehrssicherheitsarbeit aufgeführt. Die Bundesanstalt für Straßenwesen wurde daher beauftragt, das Unfallgeschehen mit schweren Güterkraftfahrzeugen zu analysieren. Grundlage der Untersuchung sind die Einzeldaten der amtlichen Straßenverkehrsunfallstatistik der Jahre 1995 bis 2001. Der vorliegende Bericht untersucht: - Unfälle deutscher Güterkraftfahrzeuge über 12t - Unfälle mit ausländischen Sattelschleppern - besondere Fragestellungen und Unfallumstände. Etwa ein Drittel aller Unfälle mit Güterkraftfahrzeugen sind solche von deutschen Fahrzeugen mit einem zulässigen Gesamtgewicht von mehr als 12t. Während sich die Anzahl der Unfälle und der dabei Verunglückten im Zeitraum von 1995 bis 2001 nur geringen Veränderungen unterlagen, sind in der Entwicklung der Getötetenzahlen starke Schwankungen erkennbar. Die meisten Unfälle mit deutschen Lkw über 12t ereigneten sich 2001 im Innerortsbereich. Die durchschnittliche Unfallschwere ist hier zwar am niedrigsten, jedoch haben die schweren Lkw hier den höchsten Hauptverursacheranteil. Zugleich wird die Gefährdung der ungeschützten Verkehrsteilnehmer besonders deutlich. Fast zwei Drittel der Unfallgegner bei Unfällen mit tödlichem Ausgang waren Fußgänger oder Radfahrer. Durch eine vergleichsweise hohe Anzahl von Unfällen zwischen entgegenkommenden Fahrzeugen werden auf Landstraßen die höchsten Unfallschwerewerte festgestellt. Hierbei wirkt sich der Größen- und Massenunterschied zwischen Lkw und Pkw besonders gravierend aus. Autobahnunfälle mit schweren Lkw haben in den Medien und in der Bevölkerung eine besondere Bedeutung, insbesondere ist dies bei schweren Unfällen mit Streckensperrungen oder bei Unfällen mit Gefahrgütern der Fall. In knapp der Hälfte der Autobahnunfälle mit Personenschaden ist der Lkw-Fahrer als Hauptverursacher festgestellt worden. Die "nicht angepasste Geschwindigkeit" und ein "zu geringer Sicherheitsabstand" sind die häufigsten Ursachen beim Lkw-Fahrer. Weniger bedeutend für das Unfallgeschehen auf Autobahnen sind "technische Mängel" oder "Überladung" bzw. "falsch gesicherte Ladung". Ist ein anderes Fahrzeug als der schwere Lkw der Hauptverursacher, so ist die maßgebliche Unfallursache die "nicht angepasste Geschwindigkeit". Das zulässige Gesamtgewicht ist in der amtlichen Straßenverkehrsunfallstatistik nur bei deutschen Fahrzeugen verfügbar. Zur Abbildung des Unfallgeschehens mit schweren Lkw aus dem Ausland wurde sich deshalb auf Analyse von Unfällen mit ausländischen Sattelschleppern beschränkt. Aufgrund eines höheren Anteils von Fernverkehrsfahrten steht bei den ausländischen Sattelschleppern das Unfallgeschehen auf Autobahnen im Vordergrund. Rund die Hälfte der an Unfällen mit Personenschaden beteiligten Fahrer ausländischer Sattelschlepper kamen aus den Niederlanden, Polen, Österreich und der Tschechischen Republik. Der Unfallhergang bei Unfällen mit ausländischen Sattelschleppern unterscheidet sich kaum von dem der deutschen Lkw über 12t. Lediglich bei Alleinunfällen spielt mangelnde Verkehrstüchtigkeit und hier insbesondere "Übermüdung" eine größere Rolle, was durch einen höheren Anteil an Fernverkehrsfahrten begründet werden kann. Insgesamt sind etwa 6% aller Unfälle mit schweren Lkw auf Autobahnen laut Unfalldaten auf Ermüdung des Fahrer zurückzuführen und fallen durch eine überdurchschnittlich hohe Unfallschwere auf. Forderungen nach einem generellen Überholverbot für schwere Lkw können aufgrund der kleinen Fallzahlen und einer relativ geringen durchschnittlichen Unfallschwere nicht begründet werden. Konturmarkierungen durch retroreflektierende Materialien an Lkw dienen dazu, eine bessere Erkennbarkeit der Fahrzeugumrisse bei Dunkelheit zu ermöglichen. Die Unfallanalyse zeigt ein hohes Sicherheitspotenzial der Konturmarkierungen, insbesondere wegen der verbesserten Erkennbarkeit der Lkw von hinten auf Autobahnen.
Im Teil 1 erfolgt eine Strukturanalyse zum Unfallgeschehen in den "Neuen Ländern" (fünf neue Bundesländer und Berlin (Ost)) für den Zeitraum von 1989 bis 1991 im Vergleich mit dem Unfallgeschehen in den alten Bundesländern im Jahre 1991. Untersuchungsgegenstand sind Unfälle mit Personenschaden und insbesondere die im Straßenverkehr Getöteten. Datenbasis sind im wesentlichen die Einzeldaten der amtlichen Straßenverkehrsunfallstatistik. Die im Jahre 1991 in den Neuen Ländern besonders ungünstige Unfallsituation ist im Zusammenhang mit der Umbruchsituation seit der Grenzöffnung im November 1989 zu sehen. So hat sich zum Beispiel die stark angestiegene Pkw-Verfügbarkeit in den Neuen Ländern in einer hohen Unfallbeteiligung von Fahranfängern niedergeschlagen. Dabei zeigt die vergleichende Analyse von jungen Fahrern (18 bis 24 Jahre) mit älteren Fahrern, das in den Neuen Ländern Fahrfehler auch in erheblichem Umfang bei den älteren Fahrern auftreten. Neben den Effekten, die im Zusammenwirken von Lebensalter, Geschlecht und Fahrerfahrung auf das Unfallgeschehen ausgehen, werden auch strukturelle Unterschiede in den Problembereichen "Alkohol und Fahren" sowie "Landstraßenunfälle" für die Neuen und Alten Länder herausgearbeitet. In Teil 2 wird ein kurzer vergleichender Überblick über Niveau und Entwicklung der Verkehrssicherheit gegeben. Dabei steht das Unfallgeschehen in den Neuen Bundesländern zwei Jahre nach der "Wende" im Vergleich zur "alten" Bundesrepublik sowie die Einordnung in den Kontext der Verkehrssicherheit in 8 europäischen Vergleichsländern und den USA im Vordergrund. Informiert wird über einige Rahmenbedingungen sowie über Getötetenanzahlen, Struktur- und Risikovergleiche. Von ungünstiger Ausgangslage hat sich das Risiko, im Verkehr tödlich zu verunglücken, im westlichen Deutschland - D(W) - in den zurückliegenden Jahren günstig entwickelt; D(W) liegt auf mittlerer Position mit weiterhin günstiger Tendenz. Im östlichen Deutschland - D(O) - wird ein Strukturbruch deutlich: bis 1989 lag dort das globale bevölkerungsbezogene Risiko in der Größenordnung der günstigsten hochmotorisierten europäischen Vergleichsländer Großbritannien, Niederlande und Schweden; 1990 haben sich in D(O) die Risikowerte etwa verdoppelt, dabei sind einzelne Unfallbereiche besonders betroffen; 1991 ist eine weitere deutliche Verschlechterung zu verzeichnen, bei der D(O) beim Sicherheitsvergleich die Spanne der europäischen Vergleichsländer überschreitet. Für 1992 ist ein Rückgang der Getötetenzahlen absehbar, allerdings liegen die Werte noch deutlich über denen des Jahres 1990.
Enhanced protection of pedestrians and cyclists remains on the focus. Besides infrastructural and behavioral aspects it is necessary to exploit technical solutions placed on motorized vehicles. Accident research needs reliable data as well as national road accident statistics. Changing the view on seriously injured road users is one of the challenges which will substantially contribute to the optimization on future traffic safety. The missing accuracy in the definition of personal injury has a detrimental effect on making cost efficient road safety policy which is not only focused on fatal accidents. The European commission requested that, starting in 2015, all EU member states provide more detailed data on the injury status of road casualties, with special regard to the group of seriously injured. Conventional accident data will always be essential. But to obtain detailed data about driver behavior in real traffic situations further data sources are required. These could be EDR data, data from electronic control units, data from traffic surveys and traffic counting, naturalistic diving studies and field operational tests. Gaining insight into normal as well as critical driver behavior will enable accident researchers to deduct functions estimating the increase or decrease of accident risk associated with certain behaviors or vehicle functions. Also with view to the introduction of highly automated driving functions in the future such data is urgently needed. Computer simulation based tools to estimate the benefits of active safety systems are another step on the way towards the safety assessment of automated driving. It is now the duty of the scientific community to ask the right questions, to develop a methodology and to merge all these data sources into a common framework for the assessment of future traffic safety innovations.
Although the annual traffic accident statistics published by the national police is available in public, the detailed traffic accident data has not been released in Korea. Recently the Ministry of Land, Infrastructure and Transport recognized the importance of in-depth accident data to enhance road traffic safety and initiated a research project to establish a collection of the detailed accident data. The main objective of the project is a feasibility study to establish KIDAS (Korea In-Depth Accident Study). Within this project, three university hospitals which are located in mid-size cities have been selected to collect accident data. Annually, more than 500 cases of accidents have been collected from the in-patient's interviews and diagnosis. Unlike GIDAS (German In-Depth Accident Study), currently on-site investigation can"t be performed by the Korean police. The only available data is patient medical records, patient's description of accident circumstances and the damaged vehicle. Occasionally the police provide the accident investigation reports containing very brief information on accident causation and vehicle safety. In a first step, the concept of KIDAS is to adopt the format of iGLAD (Initiative for the Global Harmonization of Accident Data) for harmonization. Since the currently collected accident information is extremely limited compared with GIDAS, the other sources of data and calculations such as KNCAP vehicle data, pc-crash simulations, vehicle registration information, insurance company data are utilized to complete the iGLAD template. Results from KIDAS_iGLAD and the cases of assessment of active safety devices such as AEBS, ESC, and LDWS will be evaluated.
Teil 1: Es erfolgt eine Strukturanalyse zum Unfallgeschehen in den "Neuen Bundesländern" (fünf neue Bundesländer und Berlin (Ost) für den Zeitraum 1988 bis 1990 und der Vergleich mit dem Unfallgeschehen der Alten Bundesländer im Jahre 1990. Untersuchungsgegenstand sind Unfälle mit Personenschaden und insbesondere die im Straßenverkehr Getöteten nach dem 30-Tage-Erfassungszeitraum. Als Datenquelle lag Tabellenmaterial der Statistischen Ämter zugrunde. In den Neuen Bundesländern ergab sich 1990 ein Anstieg der Unfälle mit Personenschaden um + 46 Prozent, dabei nahm die Anzahl der Straßenverkehrstoten gegenüber dem Vorjahr um + 76 Prozent zu. Um die ungünstige Entwicklung in den Neuen Bundesländern differenziert darzustellen, erfolgt eine Untergliederung nach wesentlichen Strukturmerkmalen des Unfallgeschehens: Ortslage, Art der Verkehrsbeteiligung, Lebensalter der Verkehrsteilnehmer, Unfallart, Straßenzustand, Lichtverhältnisse, Unfallverursacher und Unfallursachen. Dabei werden Unterschiede in der Unfallstruktur zwischen den Neuen und den Alten Bundesländern für das Jahr 1990 herausgearbeitet. Diese Tabellenanalyse dient nicht nur der Deskription, sondern ist als erster Schritt in Hinblick auf die Identifikation von Problembereichen der Verkehrssicherheit und die Einführung von Maßnahmen für die Hebung der Verkehrssicherheit in den Neuen Bundesländern gedacht. Erkennbar wird, dass sich die geänderten Rahmenbedingungen, wie zum Beispiel "schnelle Pkw-Verfügbarkeit", insbesondere bei den jungen Erwachsenen auswirken; gefahrenträchtige Fehlverhaltensweisen wie "Alkohol und Fahren", "überhöhte Geschwindigkeit" und "ungenügender Sicherheitsabstand" zunehmen; infrastrukturelle Mängel zum Beispiel auf Autobahnen häufig zum "Zusammenstoß mit entgegenkommenden Fahrzeug" führen. Teil 2: Es wird ein kurzer vergleichender Überblick über Niveau und Entwicklung der Verkehrssicherheit gegeben. Dabei steht das Unfallgeschehen in den Neuen Bundesländern vor und nach der "Wende" im Vergleich zur "alten" Bundesrepublik sowie die Einordnung in den Kontext der Verkehrssicherheit in 8 europäischen Vergleichsländern und den USA im Vordergrund. Informiert wird über einige Rahmenbedingungen sowie über Getötetenzahl, Struktur- und Risikovergleiche. Von ungünstiger Ausgangslage hat sich das Risiko, im Verkehr tödlich zu verunglücken, im westlichen Deutschland - D(W) - in den zurückliegenden Jahren günstig entwickelt; D(W) liegt auf mittlerer Position mit weiterhin günstiger Tendenz. Im östlichen Deutschland - D(O) - wird ein Strukturbruch deutlich: bis 1989 lag dort das globale bevölkerungsbezogene Risiko in der Größenordnung der günstigsten hochmotorisierten europäischen Vergleichsländer Großbritannien, Niederlande und Schweden; 1990 haben sich in D(O) die Risikowerte etwa verdoppelt, dabei sind einzelne Unfallbereiche besonders betroffen; für 1991 ist eine weitere Verschlechterung absehbar, bei der D(O) beim Sicherheitsvergleich die Spanne der europäischen Vergleichsländer überschreiten dürfte.
The declining trend since 1991 in the number of killed people was broken in 2011 when overall 4 009 people died in traffic accidents in Germany. The question arises if there is a stagnating trend of fatalities in Germany in future? By breaking down the accidents with casualties towards a monthly view one can see a decreasing trend of fatalities in the warmer months especially since 2009. When comparing against winter months higher deviations are observed. In December 2011 an increase of 191 traffic deaths were registered (181 in 2010 compared to 372 in 2011). Further analyses of different accident influences were evaluated and their possibility of drastic change from one year to the other was determined. As seen weather- and environmental conditions are one of the major contributing factors and are one of the causes for the increased number of fatalities. To support the underlying assumption a model had been created to calculate the number of traffic deaths on a daily basis approach. As an input, road conditions projected through weather parameters and also different driving behaviors on weekdays or holidays were used. As a result, estimates of daily fatality with up to 75% precision can be achieved out of the 2009, 2010 and 2011 data. Further on it shows that weather and street conditions have a high influence on the overall resulting number of traffic accidents with casualties, and especially to the number of fatalities. Hence it is estimated that approximately 3 300 people were killed in traffic accidents in Germany in 2013 which would be again a reduction of another 13% compared to 2012. Therefore an answer to the question will be that the decreasing trend in traffic fatalities in Germany somehow is not broken when environmental conditions are included in national statistics. Their effects will become more visible in future accident statistics and it is estimated variances of 5% to 8% of the annual number of traffic fatalities in Germany will be seen.
India is one of the leading countries reporting highest road accidents & related injuries. TMARG (Tata Motors Accident Research Group) has been recording crashes in association with M/s. Lokamanya Medical Foundation since 2011 with M/s, Amandeep Hospitals since Aug 2013. This study has highlighted some accident types not discussed extensively in literature. Trucks to Truck impacts " Cabin interaction with overhanging loadbody structures and Offset underside impacts for passenger vehicles are seen in significant numbers. The paper discusses these in more detail including severity.
The paper gives an overview of the recent (mostly 2012) figures of killed bus/coach occupants (drivers and passengers) in 27 Member States of the European Union as reported by CARE. The Evolution of the figures of bus/coach occupants killed in road accidents urban, rural without motorway and on motorways from 1991 to 2010 in 15 Member States of the EU supplements this information. More detailed are the figures reported for Germany by the Federal Statistics. The paper displays long-term evaluations (1957 to 2012) for killed, seriously and slightly injured occupants in all kinds of buses/coaches. Midterm evaluations (1995 to 2012) of the figures of fatalities and casualties are displayed for different busses according to their identification of road using as coaches, urban buses, school buses, trolley buses and "other buses". To be able to compare the evolutions of the safety of vehicle occupants it is customary to use different risk indicators. Calculations and illustrations for three often used indicators with their development over time are given: fatalities, seriously injured and slightly injured per 100,000 vehicles registered, per 1 billion (109) vehicle-kilometres travelled and per 1 billion (109) person-kilometres. These indicators are shown for occupants of cars, goods vehicles and buses/coaches. For the period from 1957 until 2012 it is obvious, that for all three vehicle categories analysed there was a clear long-term trend towards more occupant safety in terms of casualties per vehicles registered and per vehicle mileage. This was most significant for car occupants but it can be seen for bus/coach occupants and goodsvehicle occupants as well. Figures of killed occupants and of casualties related to person-kilometres are calculated and displayed for the shorter period 1995 to 2012. Here it becomes obvious that the bus/coach is still the safest mode of transport for the occupants of road vehicles. Graphs for the casualty risk indices still show significantly higher risks for car occupants despite the corresponding curve moved sustainable downwards. It is remarkable, that the risks of being killed or injured for the occupants of urban buses is growing whereas the corresponding risk for the occupants of coaches in line traffic tends downwards. The article ends with a short comparison and discussion of the risk indicators which are actually published for the occupants (driver and passengers) of cars and the passengers of buses/coaches, railroads, trams and airplanes. The interpretation of such information depends on the perception and it seems that for a complete view not only one indicator should be used and the evolutions of the indicator values during longer periods (as displayed with examples in the paper) should also be taken into account.
While it is important to track trends in the number of road accidents in different countries using national statistics, there is a need for data with more detailed information, so called in-depth accident data. For this reason, several accident data projects emerged worldwide in recent years. However, also different data standards were established and so comparative analysis of international in-depth data has been very hard to conduct, so far. This is why the project iGLAD (Initiative for the Global Harmonization of Accident Data) was established and created the prerequisites for building up a standardized dataset out of the common denominator of different in-depth accident databases from Europe, USA and Asia. In the first phase, the project received funding from ACEA to compile an initial database. To accomplish this, a suitable data scheme has been defined, a pilot study has been conducted as proof of concept and the recoding of the first common data base has been initiated. Also, to prepare the project for its self-supporting continuation in the next years, a business model has been developed. This paper reports the history and status of the project, the current challenges and the creation of a capable consortium to maintain the data. In mid-2014, the initial database containing 1550 cases from 10 different countries will be completed and a first detailed view on this data will be possible.
Anlass der Untersuchung waren die positiven Veränderungen in der japanischen Straßenverkehrs-Unfallstatistik der letzten zehn Jahre. Um die Übertragbarkeit japanischer Verkehrssicherheitsmaßnahmen auf europäische Verhältnisse prüfen zu können, wurden wichtige Kenngrößen des Unfallgeschehens und der verkehrlichen Voraussetzungen der Länder Großbritannien, Japan, Niederlande und der Bundesrepublik Deutschland miteinander verglichen: Unfalldaten (im Straßenverkehr getötete/verletzte Personen, Unfälle mit Personenschaden, Unfallraten); Bezugsdaten (Bevölkerung, Motorisierung, Straßennetz, Mobilität). Es wurden Zeitreihen für den Abschnitt von 1970 bis 1979 einschließlich gebildet. Als Hauptergebnis der Untersuchung zeigt sich das über den gesamten Untersuchungszeitraum konstant hohe Sicherheitsniveau Großbritanniens. Die japanische Verkehrssicherheit hat sich in kurzer Zeit erheblich verbessert, entspricht allerdings der erwarteten Richtung des Zusammenhangs zwischen Fahrleistungen und Unfalltoten, bezogen auf je 100.000 Einwohner. Das niedrigste Sicherheitsniveau hat unter Einbeziehung der Einwohnerzahl und der Fahrleistung derzeit die Bundesrepublik Deutschland.
Nachtunfälle : eine Analyse auf der Grundlage der Daten der amtlichen Straßenverkehrsunfallstatistik
(1978)
Im Anschluss an eine Charakterisierung der Nachtunfälle anhand von Einzelstudien werden Untersuchungen referiert, die die Auswirkungen bestimmter Umstände betreffen (Alkohol, Witterungseinflüsse, Unterschiede im Verkehrsaufkommen, Einfluss straßenbaulicher Merkmale, spezielle Orientierungsprobleme, Leistungsfähigkeit des Rettungsdienstes, Gurtanlegeverhalten). Anschließend wird über Untersuchungen berichtet, die die Wirksamkeit von Maßnahmen zur Reduzierung der Nachtunfälle betreffen (Wirksamkeit von Alkoholkampagnen, Überwachungsmaßnahmen und gesetzlichen Regelungen; Beleuchtung bzw. Sichtbarkeit des Verkehrsraumes; Wirksamkeitsuntersuchungen beleuchteter Fußgängerüberwege; Beleuchtung und Sichtbarkeit der Verkehrsteilnehmer; Verbesserung der optischen Führung durch Fahrbahnmarkierungen; Blendschutzeinrichtungen; Wildschutzzäune; Einführung der Sommerzeit; Verbesserung der Unfallrettung). Abschließend werden Fragestellungen vorgelegt, zu denen bisher keine befriedigenden Aussagen vorliegen. - Im zweiten Teil wird zunächst die Bedeutung der Nachtunfälle innerhalb des gesamten Unfallgeschehens in der zeitlichen Entwicklung dargestellt. Anschließend werden die kennzeichnenden Parameter des Unfallgeschehens für Unfälle mit Personenschaden erörtert (Art der Verkehrsteilnahme, Lebensalter sowie Geschlecht der Fußgänger bzw. Fahrer, Ortslage, Uhrzeit, Straßenzustand, Unfalltypen und -ursachen). Danach folgt eine mehrdimensionale Betrachtung zu ausgewählten Problembereichen (Unfallursache Alkohol, ungünstige Witterungsverhältnisse, jugendliche Fahrer von motorisierten Zweirädern, Pkw-Fahrer, Fußgänger). Schließlich wird über künftige Auswertungen berichtet.
Der vorliegende Bericht analysiert das Unfallgeschehen von Fahrzeugen beim Transport gefährlicher Güter in Verpackungen der Jahre 1987 bis August 1992 auf dem Gebiet der alten Bundesländer. Ein Unfall wird als Gefahrgutunfall definiert, wenn in seinem Verlauf mindestens 100 kg/l Gefahrgut austreten und/oder wenn Personen durch Gefahrgut verletzt werden. Die Untersuchung umfasst insgesamt 90 solcher Unfälle. Angaben zur Dunkelziffer liegen für den Untersuchungszeitraum nicht vor. Um die Repräsentativität der vorliegenden Erhebung abzuschätzen, wurde die Anzahl der Unfälle von Stückgutfahrzeugen mit der in der amtlichen Straßenverkehrsunfallstatistik ausgewiesenen Anzahl verglichen. Es zeigt sich, dass ungefähr jeder zweite Unfall mit gefährlichen Gütern im Rahmen der vorliegenden Erhebung nicht erfasst wurde. Ausgehend von der Untersuchung der Unfallmerkmale wie Unfallort, -art und -umstände erfolgt eine Betrachtung der an Gefahrgutunfällen beteiligten Fahrer, wobei die charakteristischen Merkmale der beteiligten Gefahrgutfahrer gesondert hervorgehoben werden. Dabei wird deutlich, dass Gefahrgutunfälle überwiegend auf Autobahnen geschehen und hauptsächlich von den Gefahrgutfahrern verursacht werden. Die gefährliche Ladung war dabei oft sehr mangelhaft gesichert. Die besonderen Gefahren der untersuchten Stückgutunfälle gehen von den transportierten Gefahrgütern aus. Daher werden die Gefahrklassen sowie Transport- und Austrittsmengen der Güter dargestellt. "Entzündbare flüssige Stoffe" (29 Prozent) haben zusammen mit "Giftigen Stoffen" (26 Prozent) den größten Anteil an den transportierten Gefahrgütern. Im Durchschnitt hatten die Stückgutfahrzeuge rund 7.600 kg Gefahrgut geladen, von denen ungefähr 1.300 kg je Unfall freigesetzt wurden. Die Bewertung der Unfallfolgen erfolgt durch eine Abschätzung ihrer volkswirtschaftlichen Kosten. Die ermittelten Kosten werden für Personen- und Sachschäden sowie Primär- und Sekundärschäden ausgewiesen. Die gesamten volkswirtschaftlichen Kosten der 90 untersuchten Unfälle belaufen sich auf circa 20 Millionen DM.
Die von verschiedenen internationalen Organisationen veröffentlichten Daten zur Verkehrssicherheit erweisen sich für die verkehrspolitischen Informationsbedürfnisse und für Zwecke der Unfallforschung häufig nicht als ausreichend. In Absprache mit dem Bundesministerium für Verkehr und der Bundesanstalt für Straßenwesen wurde daher eine Datenbank internationaler Verkehrs- und Unfalldaten aufgebaut. Berichtet wird über die Vorgehensweise bei der Datenbeschaffung und der Aufschlüsselung der Struktur der gespeicherten Daten. Für die Datenpflege und -fortschreibung ist in einer Quellendatenbank zu jeder abgespeicherten Zahl die zugehörige Quelle verzeichnet. Zum Aufbau der Datenbank wurde das Datenbanksystem SIR mit hierarchischem Aufbau verwendet. Nach dem Erreichen eines hinreichenden Ausbauzustandes soll die Datenbank allen Benutzern des Rechenzentrums BMV/BASt offenstehen.
Es erfolgt eine Aktualisierung und Neufassung des von der Bundesanstalt für Straßenwesen (BASt) im Jahre 1978 veröffentlichten Berichts "Nachtunfälle - eine Analyse auf der Grundlage der Daten der amtlichen Straßenverkehrsunfallstatistik" (Brühning, Hippchen und Weißbrodt; 1978). Ausgewertet werden die Unfalldaten seit 1970, im Wesentlichen aber die Daten des Jahres 1985. Nachtunfälle haben innerhalb des gesamten Unfallgeschehens eine besondere Bedeutung. Sie sind im Mittel schwerer als Unfälle bei Tage: über 25 % aller Unfälle mit Personenschaden, aber rund 40 % aller Unfälle mit Getöteten ereignen sich nachts. Fußgänger werden zu 48,7 % bei Nachtunfällen getötet, 43,1 % der getöteten Pkw-Insassen sterben bei Nachtunfällen. Das Unfallrisiko ist nachts erheblich größer als bei Tage. Nachts steigt das fahrleistungsbezogene Unfallrisiko der Pkw außerorts (ohne BAB) auf das 1,7-fache, auf BAB auf das 1,5-fache des Risikos bei Tage an. Neben Angaben zur zeitlichen Entwicklung erfolgt zunächst ein Überlick über die wesentlichen Kenngrößen (Art der Verkehrsbeteiligung, Alter und Geschlecht der Fußgänger beziehungsweise Fahrer, Ortslage, Unfallmonat, Wochentag und Uhrzeit, Straßenzustand, Unfalltyp und Unfallursachen) des nächtlichen Unfallgeschehens. Darüberhinaus wird eine eingehende Betrachtung zu ausgewählten Problembereichen auf der Grundlage von Tabellenanalysen sowie multidimensionalen Analysen mittels Logit-Modellen durchgeführt. Im einzelnen handelt es sich um die Problembereiche "Alkohol", ungünstiger Straßenzustand, junge Fahrer von motorisierten Zweirädern, Pkw-Fahrer und Fußgänger. Desweiteren wird auf regionale Unterschiede nach Bundesländern im nächtlichen Unfallgeschehen eingegangen.
In der Bundesanstalt für Straßenwesen (BASt) wurde die "Datenbank internationaler Verkehrs- und Unfalldaten" (INVUD) eingerichtet, in der internationale Daten zum Verkehrs- und Unfallgeschehen sowie zu den Einwohnerzahlen und Fahrzeugbeständen gesammelt und DV-gestützt verarbeitet werden. Ein erster Bericht über diese INVUD-Datenbank wurde bereits Anfang 1987 als Heft 152 der Forschungsberichte der Bundesanstalt für Straßenwesen, Bereich Unfallforschung, veröffentlicht. Inzwischen ist der Ausbau der INVUD-Datenbank weit vorangeschritten. Seit Anfang 1988 besteht ein Kooperationsvertrag mit der Kommission der Europäischen Gemeinschaften (KEG), in dessen Rahmen unter anderem der Kreis der Länder, deren Daten gesammelt werden, auf alle EG-Länder erweitert worden ist. Zu den Vorteilen der Kooperation mit der KEG gehört auch deren wirkungsvolle Unterstützung bei der Beschaffung noch fehlender Daten. Für die Zukunft wird im Rahmen des OECD Road Transport Research Programme geplant, dass die hier beschriebene INVUD-Datenbank als Kern einer "IRTAD - International Road Transport and Accident Data Base" auf alle OECD-Länder ausgedehnt wird und zur internationalen Nutzung gelangt. Nachdem die bisherigen Ausbauabschnitte der INVUD-Datenbank weitgehend abgeschlossen sind, wird mit dem vorliegenden Bericht der Sachstand zu Beginn des Jahres 1989 dokumentiert und eine Informationsbasis für künftige Daten-Interessenten und Nutzer bereitgestellt. Vor diesem Hintergrund wird neben der Vorgehensweise bei der Datenbeschaffung, Aufbau und Administration der Datenbank sowie insbesondere der Datenbestand und der Zugriff auf die Daten beschrieben.
Das Bundesministerium für Verkehr, Bau- und Wohnungswesen hat die Bundesanstalt für Straßenwesen damit beauftragt, die allgemeine Entwicklung des Unfallgeschehens von Motorradfahrern zu untersuchen. Einen Schwerpunkt bildet dabei die Frage nach der Auswirkung des ab 01.01.1999 möglichen "Direkteinstiegs" in die unbeschränkte Fahrerlaubnisklasse A für Personen ab 25 Jahren. Aus der allgemeinen Analyse des Unfallgeschehens heraus werden Schwerpunkte abgeleitet und spezielle Fragestellungen vertieft untersucht. Außerdem wird die Frage behandelt, inwieweit die Entwicklungen im Zusammenhang mit Änderungen im Fahrerlaubnisrecht stehen. Grundlage der Untersuchung sind die Einzeldaten der amtlichen Straßenverkehrsunfallstatistik zu Unfällen mit Personenschaden, an denen mindestens ein Motorrad (Leichtkraftrad, Kraftrad oder -roller) beteiligt war. Insgesamt ist der Anstieg der Unfall- und Verunglücktenzahlen in den letzten Jahren in erster Linie auf die Zunahme von leichteren Unfällen zurückzuführen. Die Zahlen für Unfälle mit Getöteten und Schwerverletzten sind leicht rückläufig. Damit ist eine Abnahme der Unfallschwere für Motorradunfälle mit Personenschaden zu verzeichnen. Die Unfallschwere von Motorradunfällen liegt aber immer noch deutlich über der mittleren Unfallschwere aller Unfälle mit Personenschaden. Die höchste Unfallschwere ist erwartungsgemäß bei Unfällen auf Außerortsstraßen festzustellen. Etwa ein Drittel der Außerortsunfälle mit Motorrädern sind Alleinunfälle. Besonders schwerwiegend sind dabei solche Unfälle, bei denen ein Aufprall auf ein Hindernis neben der Fahrbahn erfolgt. Als häufigste Unfallursache wird bei Motorrad-Alleinunfällen "Nicht angepasste Geschwindigkeit" angegeben. Bei der Betrachtung der beteiligten Motorradfahrer nach Altersgruppen weisen insbesondere Leichtkraftradfahrer unter 18 Jahren ein hohes bestandsbezogenes Risiko auf. Die durchschnittliche Unfallschwere ist aufgrund eines höheren Innerortsanteils jedoch deutlich niedriger als bei den übrigen Motorradunfällen. Die zahlenmäßige Zunahme der Unfallbeteiligungen von Fahrern ab 35 Jahren ist auf den starken Bestandszuwachs in dieser Altersgruppe zurückzuführen. Abweichungen vom längerfristigen Trend bei der Entwicklung des Unfallgeschehens mit Motorrädern können durch unterschiedliche Witterungsbedingungen einzelner Jahre verursacht werden. Da ein großer Teil des Motorradverkehrs durch Freizeitverkehr geprägt ist, kommt es hierdurch zu Schwankungen der Unfallzahlen. Änderungen gesetzlicher Voraussetzungen oder Vorschriften, welche die Nutzungs- oder Kaufgewohnheiten beeinflussen, haben dagegen einen längerfristigen Einfluss auf das Unfallgeschehen mit Motorrädern. Die Möglichkeit des Direkteinstiegs in die unbeschränkte Klasse A seit dem 1.1.1999 für Personen ab 25 Jahren zeigt bislang keine Auswirkungen im Unfallgeschehen.
Nächtliche Freizeitunfälle junger Fahrer stellen einen besonderen Problembereich dar. Gemessen an ihrem Anteil an der Bevölkerung sind junge Fahrer im Alter von 18 bis 24 Jahren überdurchschnittlich häufig am Unfallgeschehen beteiligt. Vor diesem Hintergrund wurde die Studie "Regionalstruktur nächtlicher Freizeitunfälle junger Fahrer" der Jahre 1992/93 aktualisiert. Dazu wurden die Daten der amtlichen Straßenverkehrsunfallstatistik der Jahre 1997 und 1998 untersucht. Als junge Fahrer bei nächtlichen Freizeitunfällen werden alle 18-24-jährigen Fahrer und Fahrerinnen von Pkw und Motorrädern bezeichnet, die an Unfällen mit Personenschaden in der Zeit von 20 Uhr abends bis 3.59 Uhr morgens beziehungsweise am Wochenende (Samstag, Sonn- und Feiertag) bis 5.59 Uhr morgens beteiligt waren. Insgesamt waren in den Jahren 1997 und 1998 über 60.000 junge Fahrer an nächtlichen Unfällen mit Personenschaden beteiligt, das sind 24 Prozent aller jungen Unfallbeteiligten. Der typische unfallbeteiligte junge Fahrer ist ein Mann, der überdurchschnittlich häufig mit "nicht angepasster Geschwindigkeit" unterwegs ist oder unter "Alkoholeinfluss" steht. Die Unfallbeteiligung junger Fahrer ist regional sehr unterschiedlich. Für alle 439 Stadt- und Landkreise Deutschlands wurden kreisbezogene Kenngrößen wie zum Beispiel Unfallbeteiligung, Alkoholeinfluss und Risiko junger Fahrer berechnet und die Ergebnisse kartografisch dargestellt. Die Verteilung im Bundesgebiet zeigt deutliche Zusammenhänge mit der Siedlungsstruktur. Anhand der Bevölkerungs- und Flächendaten der Stadt- und Landkreise wurden 6 Kreisstrukturtypen gebildet, die unterschiedliche Verdichtungsstufen beschreiben. Obwohl die Anzahl nächtlicher Freizeitunfälle in den Ballungsräumen sehr hoch ist, sind junge Fahrer und ihre Mitfahrer in ländlichen Gebieten am stärksten gefährdet.
Im vorliegenden Bericht wird das Unfallgeschehen beim Gefahrguttransport analysiert. Grundlage der Untersuchung sind die Einzeldaten der amtlichen Straßenverkehrsunfallstatistik, die der BASt für Zwecke der Unfallforschung übermittelt werden. Untersucht werden die Unfalldaten der Jahre 1992 bis 1995. Ein Unfall wird als Gefahrgutunfall definiert, wenn im verfügbaren Datenmaterial der Unfälle mit Personenschaden bei mindestens einem Güterkraftfahrzeug mindestens zu einem gefahrgutspezifischen Merkmal eine Angabe vorliegt. Es erfolgt eine detaillierte Betrachtung der Struktur der Unfälle mit Personenschaden beim Transport gefährlicher Güter anhand wichtiger Unfall- und Beteiligtenmerkmale. Weiterhin werden spezifische Unterschiede zwischen dem Unfallgeschehen von Güterkraftfahrzeugen beim Gefahrguttransport und dem Gütertransport insgesamt herausgearbeitet. Beim Gefahrguttransport hat sich während des Untersuchungszeitraums die Zahl der Unfälle mit Personenschaden pro Jahr deutlich verringert. Unter der Voraussetzung, dass die Dunkelziffer und Qualität der Unfalldaten im Betrachtungszeitraum annähernd konstant geblieben ist, kann auf einen Rückgang der Unfälle beim Transport gefährlicher Güter geschlossen werden. Im Vergleich zum Unfallgeschehen des allgemeinen Güterverkehrs auf der Straße sind Unfälle beim Transport gefährlicher Güter seltene Ereignisse. "Nur" rund 8 von 1.000 Unfällen mit Personenschaden, an denen Güterkraftfahrzeuge beteiligt waren, wurden nach der vorliegenden Definition als Gefahrgutunfall eingestuft. Die Folgen dieser Unfälle sind jedoch deutlich schwerer. Im Mittel wurden bei 1.000 Unfällen mit Personenschaden beim Gefahrguttransport 69 Personen und beim Güterverkehr insgesamt 46 Personen getötet. Dabei hat jedoch das transportierte Gefahrgut bei 92 Prozent der betrachteten Unfälle nicht unmittelbar zu der deutlich höheren Unfallschwere beigetragen, da es "nur" bei 8 Prozent der Unfälle zu einem Austritt von Gefahrgut kam. Die entstandenen volkswirtschaftlichen Kosten liegen bei den Personenschäden um 40 Prozent und bei den Primär-Sachschäden um das Dreifache über den mittleren Kosten eines Unfalls im allgemeinen Güterverkehr. Sekundär-Sachschäden, das sind überwiegend die durch das Gefahrgut verursachten Langzeitschäden, konnten bei dieser Untersuchung nicht ermittelt werden, da entsprechende Informationen nicht vorlagen. Eine frühere BASt-Untersuchung (PÖPPEL, KÜHNEN; 1993) hat aber gezeigt, dass Sekundär-Sachschäden - bei den damals untersuchten Tankfahrzeugunfällen - nochmals bis zu etwa 40 Prozent höher liegen als Primär-Sachschäden.
Ausgangspunkt der in diesem Bericht dargestellten Forschungsarbeiten und -ergebnisse ist ein Untersuchungsauftrag des Bundesverkehrsministeriums an die BASt zur Frage, inwieweit das Telefonieren am Steuer unfallursächlich ist. Hierzu fand im Jahr 1996 bei der polizeilichen Unfallaufnahme eine Zusatzerhebung in Rheinland-Pfalz und ausgewählten Gebieten Bayerns statt. Parallel führte die BASt eine repräsentative Bevölkerungsbefragung von Pkw-Fahrern in Deutschland durch. Zur Anlehnung der durchgeführten Analysen an den aktuellen Forschungsstand wird ein Überblick über die verfügbare Literatur mit Darstellung bisheriger Studien über die Auswirkungen des Telefonierens am Steuer gegeben. Auch auf die rechtlichen Regelungen anderer Länder wird eingegangen. Da für Pkw und Fahrzeuge des Schwerverkehrs unterschiedliche Bedingungen für Verkehrsteilnahme, Fahrzeugnutzung und Ausstattung mit Telefon bestehen, werden beide Gruppen einer getrennten Analyse unterzogen. Rund 8 Prozent der Pkw-Fahrer führten 1996 laut Befragung ein Telefon mit sich, darunter 30 Prozent mit Freisprecheinrichtung: Fahrer mit Telefon weisen im Mittel überdurchschnittliche Fahrleistungen auf. Der mit Fahrleistungen gewichtete Verkehrsanteil der Pkw-Fahrer mit Telefon liegt bei 15 Prozent. Im ausgewerteten Unfallgeschehen wurde bei 5,6 Prozent der an Unfällen mit Personenschaden (UPS) und bei 6,8 Prozent der an Unfällen mit schwerwiegendem Sachschaden (USS) beteiligten Pkw-Fahrer ein Telefon festgestellt, hiervon verfügten 33,2 Prozent über eine Freisprechmöglichkeit. Es kann nicht auf ein insgesamt höheres Unfallrisiko der Pkw-Fahrer mit Telefon geschlossen werden. Die Unfalldaten zeigen, dass Telefone in überwiegend leistungsstärkeren, relativ neuen Pkw genutzt werden. Dies korrespondiert mit den Ergebnissen der Befragung. Unfallstrukturbetrachtungen beziehen sich auf Pkw und Hauptverursacher mit/ohne Telefon, um eine mögliche Unfallursächlichkeit des Telefonierens für bestimmte Ortslagen, Unfalltypen, Unfallarten, Unfallursachen und Unfallzeitpunkte herauszufiltern. Pkw mit Telefon sind analog zur Fahrzeugnutzung dieser Gruppe zu wesentlich höherem Anteil auf den BAB unfallverwickelt als Pkw ohne Telefon. Auffällige Befunde ergeben sich bei Auffahrunfällen innerorts: Fahrzeuge ohne Freisprecheinrichtung sind innerorts deutlich häufiger an Auffahrunfällen beteiligt als Fahrzeuge mit Freisprecheinrichtung und Pkw ohne Telefon. Dies gilt verstärkt bei weniger leistungsstarken Fahrzeugen. Telefonieren war nach den Feststellungen der Polizei bei etwa jedem zweiten Unfall, bei dem telefoniert wurde, mit unfallursächlich. Die Fahrzeuge des Schwerverkehrs, bei denen die Erreichbarkeit der Berufskraftfahrer häufig als erforderlich gilt, haben eine deutlich höhere Telefonausstattung als Pkw, mit großen Unterschieden zwischen den Fahrzeuggruppen. Die Unfallstruktur der Hauptverursacher mit Telefon zeigt Auffälligkeiten auf Landstraßen und insbesondere BAB. Bei den meisten Schwerverkehrsunfällen, bei denen die Polizei angab, dass (vermutlich) telefoniert wurde, war das Telefonieren mit ursächlich.
Auf Autobahnen entfallen ca. 30 Prozent der gesamten Kraftfahrzeugfahrleistung. Die Anzahl der Unfälle und Verunglückten im Straßenverkehr ist dagegen auf Autobahnen vergleichsweise gering. Autobahnen gelten somit, gemessen an der Fahrleistung, als die sichersten Straßen. Denoch verunglücken auf Autobahnen jährlich mehr als 1.000 Verkehrsteilnehmer tödlich. Voraussetzung für gezielte Maßnahmen zur weiteren Verbesserung der Verkehrssicherheit auf Autobahnen sind Kenntnisse über die wesentlichen Gefahrenpotentiale. Im Vordergrund stehen die Unfälle mit Getöteten und Schwerverletzten. Die Bewertung der Unfallfolgen erfolgt anhand der Unfallkosten aller Autobahnunfälle mit Personenschaden. Bei der Strukturanalyse der BAB-Unfälle wird durchgängig zwischen den Alten Ländern (Gebiet der früheren Bundesrepublik) und den Neuen Ländern (fünf neue Bundesländer und Berlin-Ost) unterschieden, da zum einen die Strukturuntersuchung in der zeitlichen Entwicklung nur für das Gebiet der Alten Länder möglich ist, und zum anderen dem (noch) grundlegenden Unterschied hinsichtlich des BAB-Netzes der Alten und Neuen Länder Rechnung zu tragen ist. Auf Basis der Einzeldaten der amtlichen Straßenverkehrsunfallstatistik erfolgt zunächst ein Überblick über wesentliche strukturelle Veränderungen auf den Autobahnen der Alten Länder in den Jahren seit 1985. Danach wird die Unfallstruktur der Alten und der Neuen Länder nach Unfallmerkmalen, nach der Struktur ihrer Verursacher und in ihrer Bedeutung für die Unfallschwere dargestellt. Für sechs ausgewählte Themenbereiche (Baustellen-, Nebel-, Güterkraftfahrzeug-, Ausländer-, Nacht- und Alkoholunfälle) wird die Struktur der schweren BAB-Unfälle gesondert analysiert. Ergänzend werden die in der Sonderuntersuchung "Struktur der Unfälle mit Getöteten auf Autobahnen in Bayern im Jahr 1991" des Büro für Kfz-Technik des HUK-Verbandes festgestellten Schwerpunktthemen in den Kontext der übrigen Bundesländer gestellt. Es kann festgestellt werden, dass die strukturellen Veränderungen im Verkehrsgeschehen auf den Autobahnen ihren Niederschlag in der Unfallstruktur gefunden haben. So ist die Zunahme des Freizeitverkehrs auf den Autobahnen nicht nur von der Unfallhäufigkeit her als Problemgebiet einzustufen; bedenklich ist vor allem, dass der insgesamt festgestellte Rückgang der mittleren Unfallschwere das nächtliche Unfallgeschehen nicht berührt. In diesem Zusammenhang sind auch die Alkoholunfälle, die vorwiegend nachts registriert werden, als besonderes Problemgebiet einzustufen: Im Jahre 1992 war jeder 10. Verkehrstote auf Autobahnen Opfer eines Alkoholunfalls.
Über 80 Prozent aller an Unfällen mit Personenschaden beteiligten Kraftfahrzeuge sind Pkw. Für die Beschreibung der Unfallbeteiligung von Pkw unterschiedlicher Fahrzeugtypen und nach unterschiedlichen Fahrzeug- und Haltermerkmalen haben absolute Unfallzahlen jedoch nur eine geringe Aussagefähigkeit. Soll ein Vergleich der Beteiligung unterschiedlicher Teilkollektive von Pkw am Unfallgeschehen vorgenommen werden, so ist das Ausmaß ihrer Verkehrsbeteiligung zu berücksichtigen. Mit der "Fahrleistungserhebung 1990" (Hautzinger et al., 1993) liegen hierzu erstmals auch Fahrleistungsangaben differenziert nach Pkw-Typgruppen und nach Halter- und Fahrzeugmerkmalen vor. Grundlage der Untersuchung sind die Daten der an Unfällen mit Personenschaden und schwerem Sachschaden im Lande Nordrhein-Westfalen in den Jahren 1989 und 1990 beteiligten Pkw, ergänzt um fahrzeugtechnische Angaben des Kraftfahrt-Bundesamtes. Das fahrleistungsbezogene Unfallrisiko (Unfallrate) von Pkw wurde zunächst in Abhängigkeit von ausgewählten Fahrzeugmerkmalen (zum Beispiel Fahrzeugalter, Hubraum, Motorleistung) beschrieben und mit dem bestandsbezogenen Unfallrisiko (Unfall-belastung) verglichen. Danach wurde das Unfallrisiko von 228 verschiedenen Pkw-Typgruppen untersucht. Dabei wurden Zusammenhänge zwischen den Unfallraten der verschiedenen Gruppen, der mittleren Jahresfahrleistung, der Motorleistung und dem Alter der unfallbeteiligten Fahrer deutlich. Um den Zusammenhang zwischen dem fahrleistungsbezogenen Unfallrisiko verschiedener Pkw-Typgruppen und weiteren - nicht fahrzeugspezifischen - Einflussgrößen zu verdeutlichen, wurde anschließend die Pkw-Unfallrate in Abhängigkeit von wichtigen Strukturmerkmalen des Unfallgeschehens (zum Beispiel Ortslage, Fahreralter, Unfallursache) untersucht. Es zeigte sich, dass die festgestellten deutlichen Zusammenhänge zwischen Fahrzeugmerkmalen und Risikokenngrößen beziehungsweise die zwischen verschiedenen Pkw-Typgruppen gegebenen Unterschiede bei der Unfallrate und bei der mittleren Jahresfahrleistung einhergehen mit unterschiedlichen Fahrerpopulationen und unterschiedlicher Fahrzeugnutzung. So ist davon auszugehen, dass Pkw mit bestimmten Fahrzeugmerkmalen beziehungsweise bestimmte Pkw-Typgruppen, die hohe Unfallraten aufweisen, stärker von jungen Fahrern genutzt werden, und die im Mittel niedrigeren Jahresfahrleistungen dieser Pkw-Typgruppen zu einem vergleichsweise geringen Anteil auf den (sichereren) Autobahnen erbracht werden.
Aus Anlass der schweren Omnibusunfälle im Sommer 1992 hat das Bundesverkehrsministerium die Bundesanstalt für Straßenwesen (BASt) beauftragt, eine Analyse der Gründe dieser Unfälle zu erstellen. Die vorliegende Sonderauswertung der amtlichen Straßenverkehrsunfallstatistik zur Frage der Sicherheit von Bussen unter Einbezug von Exposure-Daten ist Teil des von der BASt vorgelegten Untersuchungskonzepts. Die Anzahl der Busunfälle mit Personenschaden ist in den Alten Bundesländern von 1980 bis 1991 um insgesamt rund 22 Prozent auf 5.111 Busunfälle gesunken. Insgesamt verunglückten im Jahre 1991 bei Busunfällen 8.099 Personen (4.189 Businsassen), davon wurden 134 getötet (darunter 9 Businsassen). Im Jahre 1991 ereigneten sich in den Neuen Bundesländern 888 Busunfälle mit Personenschaden, dabei verunglückten 1.713 Personen (768 Businsassen), davon 110 (17 Businsassen) tödlich. Businsassen reisen vergleichsweise sicher. Das Unfallrisiko für Busse war zwar im gesamten Untersuchungszeitraum überdurchschnittlich hoch (Bus-Unfallrate 1991: 1,28; Gesamt-Unfallrate 1991: 0,69), ist jedoch auf eine sehr hohe Bus-Unfallrate auf Innerortsstraßen zurückzuführen. Das Risiko für Businsassen war dagegen in jeder Ortslage niedriger als das der Gesamtheit der Verkehrsteilnehmer (Bus-Verunglücktenrate: 0,071; Gesamt-Verunglücktenrate: 0,584). Auf den Bundesautobahnen (BAB) der Alten Bundesländer war die Anzahl der Busunfälle mit Personenschaden mit 238 im Jahre 1991 (703 Verunglückte) deutlich höher als im Jahre 1985, auf Landstraßen hingegen lag die Anzahl der Busunfälle und die Anzahl der Verunglückten niedriger. Die häufigste polizeilich genannte Unfallursache beim Busfahrer war "nicht angepasste Geschwindigkeit". Auf Autobahnen war der Anteil der Nachtunfälle von Bussen auffällig hoch. Auswirkungen der politischen Veränderungen in den osteuropäischen Staaten und der deutschen Wiedervereinigung werden in der Untersuchung des Unfallgeschehens im grenznahen Bereich zu den Neuen Bundesländern und der Auswertung der Herkunft unfallbeteiligter Busse deutlich: Im grenznahen Bereich ereigneten sich im Jahre 1991 rund 22 Prozent aller BAB-Unfälle von Bussen (1985: 14 Prozent), der Anteil der nicht in den Alten Bundesländern zugelassenen, dort aber unfallbeteiligten Busse betrug im Jahre 1991 rund 29 Prozent.
There is a need to continue to set the right vehicle safety policy priorities in the future. Research has to point out the most cost efficient and safety relevant measures to further reduce the number of road traffic casualties. The overall development shows that the constant and rapid decrease in the number of road casualties slows down. New innovations need to enter the vehicle market soon, in order to continue the success achieved in the last decade. Priorities for vehicle safety are driven by safety and mobility demands. It is necessary to keep a strong lid on all aspects of elderly and vulnerable road users. The fraction of powered-two-wheelers (PTW) is a priority group. PTWs have a risk of being involved in an accident, 14times higher than that of a passenger car. However, the figures do also show that every second fatality is a car occupant. Therefore passenger car safety remains to be top priority. Heavy goods vehicles are overly represented in fatal accidents, addressing the need to make these vehicles more compatible with other road users. These facts highlight the necessity not only to increase vehicles" self protection, but also to make cars - and trucks - more compatible and safe. Cycling is a strongly increasing mode of transport. This is a further reason to demand better protection for cyclists and pedestrians from car design and car active and integrated safety systems. Another priority for future vehicle safety is related to demographics. It is less known that the purely demographic effect will be superimposed by an increasing wish of elderly people to be mobile. However, elderly people show deficits concerning their biomechanics. This emphasizes the need for better and more adaptive restraint systems, but also further technological challenges and demands for active safety systems. However, in order to progress, current technological limitations have to be overcome. Cost benefit considerations, but also consumer acceptance and desires, will drive this process.
Analysis of the accident scenario of powered two-wheelers on the basis of real-world accidents
(2013)
For the first time since 20 years the German national statistics of traffic accidents revealed an increasing number of fatalities and seriously injured persons in 2011. This negative development was especially caused by increasing numbers in all groups of vulnerable road users (VRU). Furthermore, the comparison of fatality reduction rates between several categories of road users shows that persons on motorcycles show the worst performance over years. Although every second fatality in German traffic accidents is still a car occupant, users of PTW make up more than 20% in the meantime. Assuming further improvements in the field of occupant protection this trend will continue. For that reason, a study on the basis of real-world accidents was conducted to describe the accident scenario involving motorcycles and to identify the reasons of the above-described fact. Approximately 1.800 motorcycle accidents out of GIDAS database were used for the analyses. The first part of the study deals with the question how representative the GIDAS database is for the German motorcycle accident scenario. Afterwards, detailed descriptive statistics on motorcycle accidents were presented considering numerous parameters about the accident scene, environmental influences, vehicle information, individual characteristics, interview data, injury severity and injury causation. One important point is the identification of the most frequent critical situations that are typical for motorcycle accidents. Furthermore, a special focus was on accident causation. Finally, conspicuous facts out of the analysis are emphasized. All in all, the study gives a comprehensive overview about the German motorcycle accident scenario. One the one hand, the use of weighted GIDAS data allows representative and robust statements on the basis of large case numbers; on the other hand highly detailed conclusions can be drawn. The results of the study help to understand the particularities of motorcycle accidents and provide approaches for further improvements in the field of PTW safety.
It is very important for Automotive OEMs to get feedback on their product performance on real roads for continuous improvement. Every OEM has a way of collecting this feedback for various performance parameters. Systematic accident research is a way to generate the information related to safety performance of the vehicle. In India, while there is a large amount of data related to the accidents, it is found this data is aimed at understanding the gross statistics and not directly useful for technology development. This paper explains learnings from a pilot study carried out in collaboration with an Emergency Medical Services provider on one of the expressways (motorways). This pilot study has resulted in development of working model that could now be scaled up at for wider application. The paper also presents some of the important observations based on the data collected.
Police records about traffic accidents like used by IRTAD (International Road Traffic and Accident Database) and CARE (Community Road Accident Database) do not represent all road injuries. For instance, road accidents of bicyclists without a counterpart are usually not reported. Furthermore, IRTAD-like data contains hardly any information on injury outcome and accident circumstances. This information gap leads to an under-representation of the safety concerns of the most vulnerable road users like children and the elderly both in accident research and safety promotion. Injury registration for the European Injury Database (IDB), in turn, combines details of accident causation with diagnostic information that can be used to assess injury severity and long term consequences. The IDB is collecting data from hospital emergency department patients and is being implemented in a growing number of countries. In this article IDB results on mode of transport and injury outcome are presented from a sample of nine EU member states.
The increasing economics in India has an enormous growth of its road traffic. As observed from official Indian accident statistics the number of road fatalities are one of the highest worldwide. In contrast to most industrialized nations they have an rapidly increasing trend. To come along with this trend it becomes more than essential to understand the traffic accident situation. The official Indian accident statistics gives a glimpse of only basic information. Therefore more detailed data is needed. By using In-depth accident data and officially representative statistics the current accident situation can be evaluated in India, if a suitable weighting methodology is considered. Hence in 2009/2010 a pilot study with the collaboration partner JP-Research India pvt. Ldt. was gathered in Tamil Nadu in south of India. In-depth accident investigations were done around the Coimbatore area on four highways. At first, the collected data is evaluated. Due to consequent and continuous further development based on the first approach a methodology similar to NASS/CDS/GES in the US and GIDAS in Germany was developed. Of course all relevant accident related parameters including pictures and severity information were collected. As a matter of fact based on scaled sketches and reconstruction benefit analyses can be done in order to analyze the accident scenery in India. As a first outcome influence from infrastructure, missing education and vehicle safety were identified as key parameters in order to reduce the number of accidents and casualties. To compare the accident situation against international standards an accident classification for left hand traffic was developed based on the German Insurance classification system. Looking into detail additional accident types were identified and added to create an Indian accident type catalogue. The positive results encouraged several OEMs to participate in this investigation and together with BOSCH a consortium was established in 2010/11. Within one year from beginning in May 2011 about 200 highway accidents were collected, reported and reconstructed using the new standard. Hence a first good overview of the accident situation is available for the Coimbatore Tamil Nadu area. The major target for establishing accident investigations is the extension towards other states of India and urban areas to achieve a better overview of the accident scenery. Therefore local and national authorities have to be embedded in order to strengthen the awareness against traffic safety.
Since 2008, the authors inspected fatal traffic accidents on the spot every year, with the cooperation of Toyota police station in Aichi pref. In the jurisdiction, numbers of fatal accidents were 18 in 2008, 12 in 2009, 14 accidents in 2010, and 16 in 2011. We here report the results of our analysis of information obtained by detailed inspection for those that occurred from 2008 to 2010. We focused on vehicle-to-pedestrian accidents, which accounted for about 45% of all accidents in 2008. Because many accidents occurred on residential roads not far from pedestrians" homes, it was revealed that the decrease of the collision speed by traffic calming such as humps and zone speed management, was highly effective. On the other hand, pedestrian detection technologies seemed to be also effective as a countermeasure on vehicle side. Every pedestrian position against a vehicle was clarified and TTC (Time to Collision) was calculated provisionally. Pedestrian accidents in intersections were also examined. Among the intersection pedestrian accidents within the jurisdiction, compared with the national average in Japan, the ratio of intersections without a signal and the ratio without a pedestrian crossing were high. According to the comparison of the Japanese traffic accident patterns between 2001 and 2008, pedestrian accidents during turning right and turning left did not decrease much. For elderly drivers, these accidents occurred very often. Finally, single vehicle accidents were analysed with the accident pattern analysis methods used above. There were high numbers of single vehicle accidents against object on single roads. Although fatal accidents against guardrails decreased, the numbers of fatal accidents against a utility pole and a sign pole were nearly constant. As for the impact with narrow width objects such as utility poles, the fatality rate was very high, and countermeasures of both road infrastructure and vehicles seem to be effective.
This study analyses no.39 cases in which n.41 motorcyclists were fatally injured, or 36% of total motorcycle fatalities in Northern Ireland between 2004 and 2010 (n.114). There were n.17 cases (43.6%) where the actions of another vehicle driver caused the collision, in thirteen of these cases the motorcycles had their lights switched on. The remaining n.22 collisions (56.4%) were due to the actions of the motorcyclist. In the approach to the collision scene, there were n.13 cases (31.7%) in which the approach was a right hand bend and in n.8 (19.5%) cases, the approach was a left hand bend. In the remaining n.18 (43.9%) cases, the approach was a straight road. Of the n.17 (41.4%) motorcycles that slid after falling, n.10 (24.4%) fell onto their right side and the remaining n.7 (17.1%) fell onto their left side. The information from this study identifies primary and contributory causes of motorcycle collisions.
The number of road accidents in Portugal has decreased significantly in the last decades, however, this tendency is not similar in all types of transportation. In the most recent years and by European standards, Portugal is still one of the leading countries concerning the number of fatalities in Powered Two Wheelers (PTW) accidents. To this effect, the in-depth investigation of PTW accidents is crucial and so, a thorough statistical analysis concerning the main factors influencing PTW riders injury severity accidents was undertaken regarding the 2007-2010 period in the National Road Safety Authority (ANSR) injured riders database using the software SPSS. In addition, to determine the importance of absent factors in the database analysis, such as velocity, a set of 53 real accidents involving PTW were also investigated and computationally reconstructed using the software PC-Crash. Lateral collisions between a motorcycle, its rider and the side of three different passenger cars were also simulated, varying the motorcycle impact angle and velocity in order to estimate the PTW deformation energy and the rider- injuries, as this accident configuration stands out in terms of frequency and even severity. The results of this detailed study are presented.
Supervision of the safety performance in public transport is one of the main tasks of the Federal Office of Transport (FOT) in Switzerland. Recently a three level system of safety indicators has been defined to cover all means of Swiss public transport. The safety indicators are fed by the FOT incident database since the year 2000. In cooperation with the Institute for Traffic Safety and Automation Engineering (iVA) at TU Braunschweig, Germany, FOT is developing a suitable methodology for the definition and evaluation of the safety targets in Swiss public transport. The methodology is applied for evaluation of safety indicators on a country level and for single transport companies. In a new approach the abovementioned methodology is applied to car incident data to develop an indicator based cross-modal safety measure.
With an ever rising human life expectancy the share of elderly people in society is constantly rising. This leads to the fact that at the same rate the share of people with age related diseases such as dementia and poor eyesight taking part in traffic will rise and therefore traffic accidents caused by this group of people due to the disease will play an ever greater role. This Situation will be among the future challenges of road safety work. At present this study displays specific characteristics of accidents caused by elderly car drivers (aged 65 or higher) based on the analysis of the German In-Depth Accident Study GIDAS. Herein almost 1000 elderly car drivers were identified as accident participants in the years 2008 to 2011. The focus of this study lies on identifying special types of accidents which are caused by elderly drivers and on characterizing these types with the information gathered on scene and by interviewing the participants. The main evidence analyzed is the knowledge about the accident locality, the trajectories of the participants as well as the reasons for the occurrence of the accidents. Furthermore personal information such as the personal condition before the accident and driving purposes is used to identify patterns of contributing circumstances for accidents caused by elderly traffic participants.
The GIDAS-investigation team of Dresden (VUFO) has documented more than 11.500 accidents since 1999. The documentation of the accident includes beside vehicle-, injury- and environmental-data very detailed reconstruction data. Within this accident investigation the VUFO began to record the skid resistance of the accident site in 2009. The measurements are divided in macro- and microroughness (Sand depth method and Portable Skid Resistance Tester-SRT-by Munro-Stanley London-©). Both methods are used to determine the skid resistance for more than 1000 passenger cars. The aim of the present study is to find out a relationship between the measured skid resistance, the road conditions and the friction coefficient, which is used to calculate the maximum accelerations and decelerations during a reconstruction of an accident. Basic approach to convert the SRT-value into the friction coefficient is the calculation of the theoretical absorbed energy of the spring rubber system of the swinging arm of lever. This absorbed energy is used to get the friction coefficient by using the equations for the work of friction. To consider the road-behavior, in correlation to the friction coefficient, the results will be merged with existing literature. Last step for this study will be a comparison between actual used friction coefficients all over the GIDAS-database and the theoretical results. The study shows, if it is possible to use the SRT-Measurement for the estimation of a friction coefficient for the reconstruction of a traffic accident. As expected, the GIDAS-Database and the additional measurement of the roughness of the road directly on the spot are an enormous useful dataset.
The main objective of EC CASPER research project is to reduce fatalities and injuries of children travelling in cars. Accidents involving children were investigated, modelling of human being and tools for dummies were advanced, a survey for the diagnosis of child safety was carried out and demands and applications were analysed. From the many research tasks of the CASPER project, the intention of this paper is to address the following: • In-depth investigation of accidents and accident reconstruction. These will provide important points for the injury risk curve, in order to improve it. Different accident investigation teams collected data from real road accidents, involving child car passengers, in five different European countries. Then, a selection of the most appropriate cases for the injury risk curve and the purposes of the project was made for an in-depth analysis. The final stage of this analysis was to conduct an accident reconstruction to validate the results obtained. The in-depth analysis included on-scene accident investigation, creating virtual simulations of the accident/possible reconstruction, and conducting the reconstruction. In the cases of successful reconstructions, new points were introduced to the injury risk curves. Accident reconstructions of selected cases were carried out in test laboratories as the next step following in-depth road accident investigation. These cases were reconstructed using similar child restraint systems (CRS) and the same type make and model as in the real accidents. Reconstructing real cases has several limitations, such as crash angle, cars" approximation paths and crash speed. However, a few changes and applications on the testing conditions were applied to reduce the limitations and improved the representations of the real accidents. After conducting the reconstructions, a comparison between the deformations of the cars on the real accident and the vehicles from the reconstructions was made. Additionally, a correlation between the data captured from the dummies and the injury data from the real accident was sought. This finalises an in-depth analysis of the accident, which will provide new relevant points to the injury risk curve. The CASPER project conducted a large research programme on child safety. On technical points, a promising research area is the developing injury risk curves as a result of in-depth accident investigations and reconstructions. This abstract was written whilst the project was not yet finished and final results are not yet known, but they will be available by the time of the conference. All the works and findings will not necessarily be integrated in the industrial versions of evaluation tools as the CASPER project is a research program.
Rear-end collisions are the most frequent same and opposite-direction crashes. Common causes include momentary inattention, inadequate speed or inadequate distance. While most rear-end collisions in urban traffic only result in vehicle damage or slight injuries, rear-end collisions outside built-up areas or on motorways usually cause fatal or serious injuries. Driver assistance systems that detect dangerous situations in the longitudinal vehicle direction are therefore an essential safety plus. In view of this, for ADAC, systems that alert drivers to dangerous situations and initiate autonomous braking complement ESC as one of the most important active safety features in modern vehicles. The aim of ADAC is to provide consumers with technical advice and competent information about the systems available on the market. Reliable comparative tests that are based on standardised test criteria may provide motorists with important information and help them make a buying decision. In addition, they raise consumer awareness of the systems and speed up their market penetration. The assessment must focus on as many aspects of effectiveness as possible and include not only autonomous braking but also collision warning and autonomous brake assist. The work of the ADAC accident research is the development of the testing scenarios with direct link to accident situations and the identification of useful test criteria for testing.
Introduction: Spine injuries pose a considerable risk to life and quality of life. The total number of road deaths in developed countries has markedly decreased, e.g. in Germany from over 20000 in 1970 to less than 4000 in 2010, but little is known how this is reflected in the burden of spine fractures of motor vehicle users. In this study, we aimed to show the actual incidence of spine injuries among drivers and front passengers and elucidate possible dependencies between crash mechanisms and types of injuries.
The objective of the study is to measure the risk of pedestrian and bicyclist in urban traffic through an analysis of real-world accident data. The kinematics and injury mechanisms for both pedestrian and bicyclists are investigated to find the correlation of injury risks with injury related parameters. For this purpose, firstly 338 cases are selected as a sample from an IVAC accident database based on the In-depth Investigation of Vehicle Accident in Changsha of China. A statistic measurement of the fatality and serious injury risks with respect to impact speed was carried out by logistic regression analysis. Secondly, 12 pedestrian and 12 bicyclist accidents were further selected for reconstruction with MADYMO program. A comparative analysis was conducted based on the results from accident analysis and computer reconstructions for the injury risk, head impact conditions and dynamic response of pedestrians and bicyclists. The results indicate that bicyclists suffered lower risks of severe injuries and fatalities compared with pedestrians. The risks of AIS 3+ injury and fatality are 50% for pedestrians at impact speeds of 53.2 km/h and 63.3 km/h, respectively, while that for bicyclists at 62.5 km/h and 71.1 km/h, respectively. The findings could have a contribution to get a better understanding of pedestrians" and bicyclists" exposures in urban traffic in China, and provide background knowledge to generate strategies for pedestrian protection.
From literature well-known analyzes on risks, hazards and causes of accidents of older drivers are amended by the present study in which a comparison of the specific features of accident causes of older car drivers (older than 60 years) and of younger car drivers (under 25 years) is conducted. Mainly the question is pursued if specific errors, mistakes and lapses are predominant in the two different age groups. The analysis system ACAS (Accident Causation Analysis System) used hereby consists of a sequential system of accident causation factors from the human, the technical and the infrastructural field, whereupon for this study the influence of the human features on the accident development in two different age groups is of interest. ACAS is both an accident model and an analysis and classification system, which describes the human participation factors of an accident and their causes in the temporal sequence (from the perceptibility to concrete action errors) taking into consideration the logical sequence of individual basic functions. In five steps (categories) of a logical and temporal sequence the hierarchical system makes human functions and processes as determinants of accident causes identifiable. The methodology specifically focuses on the use in so-called "In-Depth" and "On-Scene" investigation studies. With the help of the system for each accident participant one or more of five hypotheses of human cause factors are formed and then specified by appropriate verification criteria. These hypotheses in turn are further specified by indicators in such manner that the coding of the causation factors by a code system meets the needs of database processing and are accessible to a quantitative data analysis. The first results of the descriptive comparison of the two age groups concern mainly differences in the functional levels "information admission/perception" (where the elderly drivers have more difficulties than the young ones) and "information processing/evaluation" (where the younger drivers show more problems). Concerning the cognitive function of "planning" the group of younger drivers seems to be more often involved in an accident because of excessive speed.
Injuries in motorbike accidents in correlation with protective clothes and mechanism of the accident
(2013)
This study deals with a possible connection between safety clothing / accident mechanism and injury severity in a state-wide traffic accident investigation with focus on light and small motorbike-involvement for accidents in the area of the Saarland in which the persons riding the bike have been injured or killed. An interdisciplinary team of medical scientists and engineers collected the medical and technical data as well as all the relevant traces of the accident on scene and in time. During twenty months of data collection a total of 401 cases could be gathered. Grave injuries were more common for the group of heavier motorcycles (>125 ccm). Motorcyclists had been polytraumatized only in the group where the accident was connected with a collision. Significant correlation between protective clothes and injury severity could only be found for protective gloves and protective trousers. The knowledge about mechanism of the accident, protective clothes and severity of injuries can be helpful for the improvement of road and motorcyclists' safety.
Mit der vorliegenden Untersuchung knüpft die Bundesanstalt für Straßenwesen an die letzte Untersuchung zum Unfallgeschehen von Wohnmobilen aus dem Jahr 1999 an. Neben der Entwicklung der Anzahl der Unfälle von Wohnmobilen im Zeitraum 2000 bis 2010 wird die Struktur der Unfälle beleuchtet. Auch die charakteristischen Merkmale der beteiligten Fahrer der Wohnmobile und einige technische Merkmale wie z.B. die Motorisierung und das zulässige Gesamtgewicht werden untersucht. Weiterhin wird die im Unfallgeschehen kleine Gruppe der Pkw mit Wohnanhänger soweit möglich in die Untersuchung einbezogen. Diese beiden Gruppen werden der Gesamtgruppe der Pkw-Unfälle vergleichend gegenübergestellt. Wohnmobile werden in der amtlichen Unfallstatistik nicht explizit codiert. Somit sind -im Rahmen der regelmäßigen Veröffentlichungen des Statistischen Bundesamtes -keine Informationen zum Unfallgeschehen von Wohnmobilen verfügbar. Dennoch ist es möglich, über die vom Kraftfahrt-Bundesamt ergänzten fahrzeugtechnischen Angaben zum Kraftfahrzeug, deutsche Wohnmobile zu identifizieren und mit der vollen Merkmalsbreite des amtlichen Datenmaterials auszuwerten. Mit einem Anteil von weniger als 0,3% an allen Unfällen mit Personenschaden stellen Unfälle unter Beteiligung von Wohnmobilen keinen Schwerpunkt im Unfallgeschehen dar. Im Jahr 2010 wurden 743 Unfälle mit Personenschaden registriert, an denen ein Wohnmobil beteiligt war. Die Entwicklung der Unfallbeteiligung stellt sich im Zeitraum 2000 bis 2010 mit einem Rückgang von 36% bei den Unfällen mit Personenschaden sogar günstiger dar, als die Entwicklung der Unfälle unter Pkw-Beteiligung (-28%). Bei Unfällen unter Beteiligung von Wohnmobilen wurden im Jahr 2010 insgesamt 19 Personen getötet und 202 Personen schwer verletzt. Darunter waren jedoch nur 4 getötete und 62 schwerverletzte Personen Insassen eines Wohnmobils; die übrigen Verunglückten wurden beim Unfallgegner registriert. Gleichwohl zeigt die nach Fahrern und Mitfahrern differenzierte Betrachtung der Unfallschwere bei den Wohnmobilen Ansatzpunkte zur Verbesserung der Sicherheit. Im Mittel des Zeitraumes 2000 bis 2010 weisen die Mitfahrer von Wohnmobilen eine deutlich erhöhte Unfallschwere im Vergleich zu den Fahrern auf. So liegt die Kenngrösse \"Schwere Personenschäden bezogen auf die Fahrer bzw. Mitfahrer\" bei den Mitfahrern bei 51 schweren Personenschäden je 1.000 Mitfahrer und bei den Fahrern bei 34 schweren Personenschäden je 1.000 Fahrer.
The overall purpose of the ASSESS project is to develop a relevant and standardised set of test and assessment methods and associated tools for integrated vehicle safety systems, primarily focussing on currently available pre-crash sensing systems. The first stage of the project was to define casualty relevant accident scenarios so that the test scenarios will be developed based on accident scenarios which currently result in the greatest injury outcome, measured by a combination of casualty severity and casualty frequency. The first analysis stage was completed using data from a range of accident databases, including those which were nationally representative (STATS19, UK and STRADA, SE) and in-depth sources which provided more detailed parameters to characterise the accident scenarios (GIDAS, DE and OTS, UK). A common analysis method was developed in order to compare the data from these different sources, and while the data sets were not completely compatible, the majority of the data was aligned in such a way that allowed a useful comparison to be made. As the ASSESS project focuses on pre-crash sensing systems fitted to passenger cars, the data selected for the analysis was "injury accidents which involved at least one passenger car". The accident data analysis yielded the following ranked list of most relevant accident scenarios: Rank Accident scenario 1 Driving accident - single vehicle loss of control 2 Accidents in longitudinal traffic (same and opposite directions) 3 Accidents with turning vehicle(s) or crossing paths in junctions 4 Accidents involving pedestrians The ranked list highlights the relatively large role played by "accidents in longitudinal traffic", and "accidents with turning vehicle(s) or crossing paths in junctions" (the second and third most prevalent accident scenarios, respectively). The pre-crash systems addressed in ASSESS propose to yield beneficial safety outcomes with specific regard to these accident scenarios. This indicates that the ASSESS project is highly relevant to the current casualty crash problem. In the second stage of the analysis a selection of these accident scenarios were analysed further to define the accident parameters at a more detailed level .This paper describes the analysis approach and results from the first analysis stage.
A total survey of road traffic accidents involving most severely injured, defined as sustaining a polytrauma or severe monotrauma (ISS > 15) or being killed, was conducted over 14 months in a large study region in Germany. Data on injuries, pre-clinical and clinical care, crash circumstances and vehicle damage were obtained both prospectively and retrospectively from trauma centers, dispatch centers, police and fire departments. 149 patients with a polytrauma and eight with a severe monotrauma were recorded altogether. 22 patients died in hospital. Another 76 victims had deceased at the accident scene. In 2008, 49 % of patients treated with life-threatening injuries were car or van occupants, 21 % motorcyclists, 18 % cyclists and 10 % pedestrians. Among fatalities at the scene, vehicle occupants constituted an even larger portion. The number of road users with life-threatening trauma in the region was extrapolated to the German situation. It suggests that 10 % among the "seriously injured" as defined in national accident statistics are surviving accident victims with a polytrauma or severe monotrauma.
Estimation of the benefits for the UK for potential options to modify UNECE Regulation No. 95
(2010)
The side impact problem in Europe remains substantial. UK data shows that between 22% and 26% of car occupant casualties are involved in a side impact, but this rises to between 29% and 38% for those who are fatally injured. This indicates the more injurious nature of side impacts compared with frontal impacts. The European Enhanced Vehicle safety Committee (EEVC) has performed work to address the side impact issue since 1979. As part of its continuing work, it has recently investigated potential options for regulatory changes to improve side impact protection in cars further. To support this work the UK undertook an analysis to estimate the benefit for potential options to modify UNECE Regulation 95. The analysis used the UK national STATS19 and detailed Co-operative Crash Injury Study (CCIS) accident databases. Of the potential options reviewed, it was found that the addition of a pole test offered the greatest benefit.
This study that was funded by the Research Association for Automotive Technology (FAT) develops a method for the evaluation of the placement of tanks or batteries by using the deformation frequencies in real-world accidents. Therefore, the deformations of more than 20.000 passenger cars in the GIDAS database are analysed. For each vehicle a contour of deformation is calculated and the deformed areas of the vehicles are transferred in a rangy matrix of deformation. Thereby, the vehicle is divided into more than 190.000 cells. Afterwards, all single matrices of deformation are summarized for each cell which allows representative analyses of the deformation frequencies of accidents with passenger cars in Germany. On the basis of these deformation frequencies it is possible to determine least deformed areas of all passenger cars. Furthermore, intended placements of tanks or batteries can be estimated in an early stage of development. Therefore, all vehicles with deformations in the intended tank areas can be analysed individually. Considering numerous parameters out of the GIDAS database (e.g. collision speed, kind of accident, overlap, collision partner etc.) the occurring forces can be calculated or the deformation frequency can be estimated. Furthermore, it is possible to consider the influence of primary and secondary safety systems on the deformation behaviour. The analysis of "worst case accident events" is an additional application of the calculated matrix of deformation frequency.
The NHTSA-sponsored Crash Injury Research and Engineering Network (CIREN) has collected and analyzed crash, vehicle damage, and detailed injury data from over 4000 case occupants who were patients admitted to Level-I trauma centers following involvement in motor vehicle crashes. Since 2005, CIREN has used a methodology known as "BioTab" to analyze and document the causes of injuries resulting from passenger vehicle crashes. BioTab was developed to provide a complete evidenced-based method to describe and document injury causation from in-depth crash investigations with confidence levels assigned to the causes of injury based on the available evidence. This paper describes how the BioTab method is being used in CIREN to leverage the data collected from in-depth crash investigations, and particularly the detailed injury data available in CIREN, to develop evidence-based assessments of injury causation. CIREN case examples are provided to demonstrate the ability of the BioTab method to improve real-world crash/injury data assessment.
Tree impacts are still one of the most important focal points of road deaths in Germany. For the year 2008, the latest figures in the national statistics show a share of 28% of road users killed in crashes with trees alongside a road amongst all crashes on rural roads (except the Autobahn). The official German statistics show the attribute "impact on a tree" since 1995. For this first reported year, the share of road users killed in such crashes was 30%. During the last 14 years, fatal accidents with road users killed on rural roads (except the Autobahn) after impacts on a tree declined by 60% from 1,737 (year 1995) to 696 (year 2008). But this is more or less in line with the general evolution of vehicle and traffic safety in Germany. For Germany as a whole the accident statistics do not show a reduction for "treer crashes" which is clearly more than the average for all accidents. But, as shown with the paper, there are different evolutions in the several German States. In public awareness the topic "tree impacts" is mostly associated with the situation in Germany after the reunification. At that time a lot of road users were killed on the avenues in the so called "new countries". The fact that "tree impacts" are still a big share within the figure of killed road users seems to be little-known. Using updated information coming from the official statistics and in-depth-studies, accident researchers can identify a big potential for further improvements of traffic safety on the associated district roads, state roads and federal highways. There is still a need to analyse more details of the accident occurrence with impacts on trees to generate new and updated findings on the current limits and potentials of measures to improve vehicle and traffic safety. To make further efforts in reducing the figures of victims of "tree impacts" the intensification of well-known conventional solutions " for example implementation of guard rails and reduction of speed - is an option. Measures related to vehicle safety technology especially in the field of primary (active) safety will have additional benefit within the physically imposed limits. With this background it can be seen that the subject "tree impacts" should be analysed with a holistic approach taking into account the entire system of driver, vehicle, road, the environment and a social consensus as well.
Small overlap frontal crashes are defined by a damage pattern with most of the vehicle deformation concentrated outboard of the main longitudinal structures. These crashes are prominent among frontal crashes resulting in serious and fatal injuries, even among vehicles that perform well in regulatory and consumer information crash tests. One of the critical aspects of understanding these crashes is knowing the crash speeds that cause the types of damage associated with serious injuries. Laboratory crash tests were conducted using 12 vehicles in three small overlap test conditions: pole, vehicle-to-vehicle collinear, and vehicle-to-vehicle oblique (15-degree striking angle). Field reconstruction techniques were used to estimate the delta V for each vehicle, and these results were compared with actual delta V values based on vehicle accelerometer data. Estimated delta Vs were 50% lower than actual values. Velocity change estimates for small overlap frontal crashes in databases such as NASS-CDS significantly underestimate actual values.
Pedestrian and cyclist are the most vulnerable road users in traffic crashes. One important aspect of this study was the comparable analysis of the exact impact configuration and the resulting injury patterns of pedestrians and cyclists in view of epidemiology. The secondary aim was assessment of head injury risks and kinematics of adult pedestrian and cyclists in primary and secondary impacts and to correlate the injuries related to physical parameters like HIC value, 3ms linear acceleration, and discuss the technical parameter with injuries observed in real-world accidents based documented real accidents of GIDAS and explains the head injuries by simulated load and impact conditions based on PC-Crash and MADYMO. A subsample of n=402 pedestrians and n=940 bicyclists from GIDAS database, Germany was used for preselection, from which 22 pedestrian and 18 cyclist accidents were selected for reconstruction by initially using PC-Crash to calculate impact conditions, such as vehicle impact velocity, vehicle kinematic sequence and throw out distance. The impact conditions then were employed to identify the initial conditions in simulation of MADYMO reconstruction. The results show that cyclists always suffer lower injury outcomes for the same accident severity. Differences in HIC, head relative impact velocity, 3ms linear contiguous acceleration, maximum angular velocity and acceleration, contact force, throwing distance and head contact timing are shown. The differences of landing conditions in secondary impacts of pedestrians and cyclists are also identified. Injury risk curves were generated by logistic regression model for each predicting physical parameters.
The accident research of Hanover and (from 1999 on) Dresden registered 736 leg injuries (AIS ≥ 2) from 1983 to March 2007. 174 of these injuries (23.6 %) were fractures or dislocations of foot and ankle. 149 feet of 141 front seat car occupants in 140 cars were affected. Of these 117 were drivers, 24 were front seat passengers. The mean age of occupants was 38.5 -± 16.8 years. Ankle fractures were the most frequent injury (n = 82; 80 malleolar fractures, 2 pilon fractures). 34 fractures and dislocations affected the hindfoot (5 talus and 26 calcaneal fractures, 2 subtalar dislocations and 1 subtotal amputation) , 16 to midfoot (4 navicular fractures, 5 cuboid fractures, 3 fractures of cuneiformia, 2 dislocations of chopart joint, 1 subtotal amputation, and one severe decollement) and 39 the forefoot (metatarsal fractures). Open fractures were seldom seen (2 malleolar fractures, 1 metatarsal fracture). Both feet were injured in 10 cases. 33 occupants (23.4 %) were polytaumatic had a polytrauma, 17 of them died. 81 percent of the occupants were belted. The cars were divided in pre EuroNCAP (year of manufacture 1997 and older) and post EuroNCAP cars (year of manufacture 1998 and newer). Most of the foot injuries were seen in pre EuroNCAP cars. Most of the occupants sat in compact cars (40 drivers and 9 front seat passengers) and large family cars (27 drivers and 7 co-drivers). 49 of 140 accidents occurred on country roads, 26 on main roads and 13 on motorways. The crash direction was mostly frontal. Generally were found no differences of delta v- and EES-level between the injured foot regions, but divided into pre- and post-EuroNCAP cars there was a tendency to higher delta v- and EES-levels in newer cars. The frequency of foot injuries increased linearly with increasing delta v-level; but above delta v-level of 55 km/h the linear increase only was seen in pre-EuroNCAP cars, post-EuroNCAP cars showed no further increase of injuries. The footwell intrusion showed no difference between the injured foot regions but pre-EuroNCAP cars had a tendency to higher footwell intrusion. There were no differences in footwell intrusion between the car types. Only 29 of 174 fractures or dislocations of foot were seen in post-EuroNCAP cars, the predominate number of these injuries (n = 145) were noticed in pre-EuroNCAP cars. A lower probability of long-term impairment was found in post-EuroNCAP cars for equal delta v levels, using the AIS2008 associated Functional Capacity Index (FCI) for the foot region.
Unfortunately, there has been a high number of accident fatalities reported in the Czech Republic in recent years. There are many causes which have led to a growth in the number of road traffic accidents. Since 1990, traffic density has demonstrated an upward moving tendency, daily traffic-jams are on the increase in many cities and traffic capacity on roads and streets is not able to satisfy this increasing density. Moreover, many road users lack experience in terms of driving modern cars. The National Accident Study of the Czech Republic is based on the assumption that the year 2010 is considered as a pilot project with the testing operation of collecting and evaluating data from traffic accidents. From the beginning of 2011, a fully-functional structure of the Traffic Accident Research will be created and solid data generated. Based on this assumption, we hope to begin meaningful cooperation with foreign countries.
Recent findings from real-world accident data have shown that fatality risks for pedestrians are substantially lower than generally reported in the traffic safety literature. One of the keys to this insight has been the large and random sample of car-to-pedestrian crashes available in the German In-Depth Accident Study (GIDAS). Another key factor has been the proper use of weight factors in order to adjust for outcome-based sampling bias in the accident data. However, a third factor, a priori of unknown importance, has not yet been properly analysed. This is the influence of errors in impact speed estimation. In this study, we derived a statistical model of the impact speed errors for pedestrian accidents present in the GIDAS database. The error model was then applied to investigate the effect of the estimation error on the pedestrian fatality risk as a function of car impact speed. To this end, we applied a method known as the SIMulation-EXtrapolation (SIMEX) method. It was found that the risk curve is fairly tolerant to some amount of random measurement error, but that it does become flattened. It is therefore important that the accident investigations and reconstructions are of high quality to assure that systematic errors are minimised and that the random errors are under control.
A national initiative from the vehicle manufacturers, safety system suppliers, the road administration and universities in Sweden took off in 2007. The aim was to develop a national investigation network and a methodology focusing on all phases of a crash (pre-crash, in-crash and post-crash) as well as all parts of the road transport system (road user, vehicle and road environment). The initiative is formally run as a project with the acronym INTACT (Investigation Network and Accident Collection Techniques). It was a three year pilot with the aim to develop methodologies for an extended national crash investigation activity. During the first year the INTACT partners agreed on the aim for the investigation and methods for retrieving the data were developed. During the second and third year the methodology was tested in real-world investigations and further refinement was made. The paper describes the methodology developed to obtain high qualitative in-depth road crash data.
Accidents involving two wheels vehicles represent one of the more important types of accidents in Europe. These accidents are usually not easy to reconstruct specially for the analysis of the injuries and its correlation with accident dynamics and evidences. Different methodologies are applied in this work for the reconstruction of two wheeler accidents, especially accident involving motorcycles. From the typologies of road evidences like skid marks, to the use of Pc-Crash and the use of Madymo models, different reconstruction of real accidents are presented. One of the questions that sometimes arise for legal purposes when some type of head injuries arise is if the occupant was wearing or not a helmet. The correlation of head injuries with the use of the helmet is a very important issue, therefore an important legal aspect. One of the key questions for the reconstructions that is difficult to analyze, is if the vehicle occupant, was or not, wearing the helmet. Based on the previously collected information, a generic model of a helmet was developed on CAD 3D, followed by its conversion into finite elements, all in order to perform impact tests using the Madymo software that would help improve the helmet- safety, but that also can be used as a tool in accident reconstruction.
Causation patterns and data collection blind spots for fatal intersection accidents in Norway
(2010)
Norwegian fatal intersection accidents from the years 2005-2007 were analysed to identify any causation patterns among their underlying contributing factors, and also to evaluate whether the data collection and documentation procedures used by the Norwegian in-depth investigation teams produces the information necessary to perform causation pattern analysis. A total of 28 fatal accidents were analysed. Details on crash contributing factors for each driver in each crash were first coded using the Driving Reliability and Error Analysis Method (DREAM), and then aggregated based on whether the driver was going straight or turning. Analysis results indicate that turning drivers to a large extent are faced with perception difficulties and unexpected behaviour from the primary conflict vehicle, while at the same time trying to negotiate a demanding traffic situation. Drivers going straight on the other hand have less perception difficulties. Instead, their main problem is that they largely expect turning drivers to yield. When this assumption is violated, they are either slow to react or do not react at all. Contributing factors often pointed to in literature, e.g. high speed, drugs and/or alcohol and inadequate driver training, played a role in 12 of 28 accidents. While this confirms their prevalence, it also indicates that most drivers end up in these situations due to combinations of less auspicious contributing factors. In terms of data collection and documentation, information on blunt end factors (those more distant in time/space, yet important for the development of events) was more limited than information on sharp end factors (those close in time/space to the crash). A possible explanation is that analysts may view some blunt end factors as event circumstances rather than contributing factors in themselves, and therefore do not report them. There was also an asymmetry in terms of reported obstructions to view due to signposts and vegetation. While frequently reported as contributing for turning drivers, they were rarely reported as contributing for their counterparts in the same accidents. This probably reflects an involuntary focus of the analyst on identifying contributing factors for the driver legally held liable, while less attention is paid to the driver judged not at fault. Since who to blame often is irrelevant from a countermeasure development point of view, this underlying investigator mindset needs addressing to avoid future bias in crash investigation reports.
The purpose of this study was to analyse the actual injury situation of bicyclists regarding accidents involving more than one bicyclist. Bicyclists were included in a medical and technical analysis to create a basis for preventive measures and discovered repeating accident patterns and circumstances such as daytime, environment, helmet use rate. Technical and medical data were collected at the scene, shortly after accident. The population was compared focusing on bicycle versus bicycle accidents. Technical analysis included speed at crash, type of collision, impact angle, environment, used lane and relative velocity. Medical analysis included injury pattern and severity (AIS, ISS). Included were 578 injured bicyclists in 289 accidents from years 1999 to 2008, 61 percent were male (n=350) and 39 percent female (n=228). Sixty-seven percent ranged between 18 to 64 years of age, twelve percent each between 13 to 17 years of age and older than 65 years, eight percent between 6 to 12 years and one percent between 2 to 5 years.. Crashes took place in urban areas in 92 percent, in rural areas in 8 percent. Weather conditions were dry lanes in 97 percent and wet conditions in 3 percent. Eighty-three percent of all accidents happened during daytime, ten percent during night, and seven percent during dawn. The helmet use rate was only 7,5 percent in all involved bicyclists. The mean Maximum Abbreviated injury scale, Injury severity score was 1,31. Bicyclists are still minimally- or unprotected road users. The helmet use rate is unsatisfactorily low. The incidence of bicycle to bicycle crashes is high. Most of these accidents take place in urban areas. The level and pattern of injuries is moderate. Most of the more severe injuries occur to the head and could have been avoided by frequent helmet use.
The National Highways Development Project in India is aimed at upgrading over 12,000 km of national highways from 2-lane undivided roads to 4-lane divided roads. With nearly 40% of fatal crashes being reported on national highways, the effect of this project on road safety needs to be assessed. Researchers carried out on-site crash investigations and in-depth crash data collection for a period of 45 to 60 days on four 2-lane undivided highways and a 4-lane divided highway. Based on 76 crashes examined, researchers found a shift of crash pattern from head-on collisions on undivided 2- lane highways to front-rear collisions on divided 4-lane highways. This paper presents the methodology, analysis of crashes examined, and the critical safety problems identified for greater consideration in future highway development projects. This paper also highlights the need and significance of in-depth crash investigations to understand local traffic conditions and problems in India.
Accidents with vulnerable road users require special attention within the road safety work because these accidents are often accompanied with severe injuries. Thus In 2006 at least 6200 Powered Two Wheeler (PTW) riders were killed in road crashes in the EU 25 representing 16% of the total number of road deaths while accounting for only 2% of the total kilometers driven. For the prevention of accidents with VRU above all the knowledge of the causes of the accidents is of special importance. This study is based on the methodology of the German In-Depth Accident Study GIDAS. Within GIDAS extensive data on various fields of accidentology are collected on-scene from road traffic accidents with injuries in the Hannover and Dresden area. Using a well defined sample plan the collected data is highly representative to the whole German situation (Brühning et al, Otte et al). The need of in-depth accident causation data in accident research led to the development of a special tool for the collection of such data called ACASS (Accident Causation Analysis with Seven Steps), which was implemented in the GIDAS methodology in 2008 and described by Otte in 2009.
Although ATV accidents account for numerous deaths in the US and Australia, the role in traffic accidents and hospital admissions in Germany is unknown. At a level I trauma centre, hospital and crash charts were analysed for medical and technical parameters of ATV accidents. ATV drivers were 0.1% of emergency trauma patients. The mean total hospital stayrnwas 15 days; there were 1.5 stays per patients with 2.0 surgical procedures needed. One patient died, only two recovered fully. 14 cases of ATV accidents out of 18990 (0.1%) were documented within 10 years. The mean impact velocity was 35 km/h. Car collisions were predominant. The upper extremity was the predominant injured region (AIS 0.7), Mean maximum AIS was 1.4. ATV accidents in Germany are rare but pose high risk for severe injuries. Possible reasons are low active and passive security, limited experience and risky driving behaviour. Preventive measures are discussed.rn
Who doesn't wear seat belts?
(2009)
Using real world accident data, seat belts were estimated to be 61% effective at preventing fatalities, and 32% effective at preventing serious injuries. They were most effective for drivers with an airbag. Seat belts were estimated as having prevented 57,000 fatalities and 213,000 seriously injured casualties in the UK since 1983. Seat belt legislation was estimated to have prevented 31,000 fatalities and 118,000 seriously injured casualties. A future increase in effective seat belt wearing rate (which takes into account seating position) in the UK from 92.5% to 93% may prevent casualties valued at a societal cost of over -£18 million per year. To target a seat belt campaign, the question "who doesn"t wear seat belts?" must be answered. Seat belt wearing rates and the number of unbelted casualties were analysed. It was primarily young adult males who didn"t wear seat belts, and they made up the majority of unbelted fatalities and seriously injured casualties.
Over the last decades the number of traffic accident fatalities on German roads decreased by 77% down to 4968 in the year 2007. This positive development is due to optimisations of vehicle safety, roads and infrastructure and medical rescue issues. Up to now mostly the optimisations of secondary safety measures lead to this effect on vehicle safety. Since some years more and more driver assistance systems are available and lead to a further reduction of all accidents. These new systems are often comfort systems and have not primarily been developed to increase vehicle safety. In contrast to secondary safety systems primary safety systems are able to mitigate and avoid accidents. So in the future it is important to estimate the benefit of these systems in reducing accident numbers as well. Current benefit estimation methods mostly focus on a single system only and not on the combination of systems. In this paper a new method for a multivariate benefit estimation based on real accident data is developed. The paper describes the basic method to estimate the benefit of primary and secondary safety systems in combination. With the presented method the benefit will not be overestimated as it would be by a simple addition of the benefits of single systems. The model will be validated by a multivariate prospective benefit estimation of different vehicle safety systems in comparison to single benefit estimations of the same systems. For this the German In-Depth Accident Database is used. The results show the importance to implement the interactions of safety systems in the estimation process and rate the overestimation by a simple addition of the single system benefits. The validation includes primary and secondary safety systems in combination. The validation is done using more than 3500 real accidents which were initiated by cars. This sample out of the GIDAS database is representative for the current accident situation in Germany. The paper shows the necessity of a multivariate estimation of the benefit for existing and future safety systems.
One of the major problems of road safety in Europe is the powered two wheelers accidents. One of the European countries with one of the highest rates is Portugal where in 2006, mopeds and motorcycles fatalities represented 27% of all road users deaths. In this work, a deep analysis and overview of the current state of mopeds and motorcycles accidents for the 2004-2006 period is presented. Within this period 830 PTW occupants die, 2958 have been severely injured and 25000 suffer slight injuries. A detailed analysis of the conditions of these accidents has been carried out, using the data of the national accident database. This analysis provides global information, about geographic environmental conditions, driver- characteristics among others. From this data detailed information is obtained allowing to know when, where and who. In order to answer the question why more a widely collection of data has been collect for 70 accidents. The data has been collected using OECD methodology. For these accidents a detailed reconstruction has been carried out, what is especially important for fatal accidents where for instance speed in an important factor. From these collection and analysis of data a wider overview of facts and measures are extracted. Among them, some are emphasized such as that the quality and non-use of helmets plays an important role in severe and fatal accidents especially for accidents involving moped vehicles, or speed is the most important factor in fatal accidents involving motorcycles. Concerning motorcycle accident reconstruction, different tools can be used depending of the accident scenario and complexity. For simple cases, with specific characteristics, analytical formulation based in vehicle crash dynamics can be use in order to determine the impact speed of the vehicles impact, analysing the skid marks, deformations, victims rest position and considering parameters (EES, vehicle deceleration, etc). Aspects such as the energy absorption capability of motorcycles are also discussed. In the general cases the accident reconstruction software Pc-Crash has been used for the reconstruction of the accident. In very complex cases, has for instance the impact between motorcyclist and barriers, Madymo software is used especially to determine speed from injuries. An example of the impact of a motorcyclist and a motorcyclist-friendly barrier is present to illustrate the benefits and limitations of such systems.
A set of recommendations for pan-European transparent and independent road accident investigations has been developed by the SafetyNet project. The aim of these recommendations is to pave the way for future EU scale accident investigation activities by setting out the necessary steps for establishing safety oriented road accident investigations in Member States. This can be seen as the start of the process for establishing road accident investigations throughout Europe which operate according to a common methodology. The recommendations propose a European Safety Oriented Road Accident Investigation Programme which sets out the procedures that need to be put in place to investigate a sample of every day road accidents. They address four sets of issues; institutional addressing the characteristics of the programme; operational describing the conditions under which data isrncollected; data storage and protection; and reports, countermeasures and the dissemination of data.rn
Crash involvement studies using routine accident and exposure data : a case for case-control designs
(2009)
Fortunately, accident involvement is a rare event: the chance of an individual road user trip to end up in a crash is close to zero. Thus, according to general epidemiological principles one can expect the case-control study design to be especially suitable for quantifying the relative risk (odds ratio) of accident involvement of road users with a certain risk factor as compared to road users that do not have this characteristic. Ideally, of course, the database for such a case-control study should be established by drawing two independent random samples of cases (accidental units) and controls (nonaccidental units), respectively. If, however, special data collection is not an option, it is nevertheless possible to analyze routine accident and exposure data under a case-control design in order to fully exploit the information contained in already existing databases. As a prerequisite, accident and exposure data from different sources are to be combined in a single file of micro or grouped data in a way consistent with the case-control study design. Among other things, the proposed methodological approach offers the possibility to use in-depth data of the GIDAS type also in investigations of active vehicle safety by combining this data with appropriate vehicle trip data collected in mobility surveys.
The SafetyNet project was formulated in part to address the need for safety oriented European road accident data. One of the main tasks included within the project was the development of a methodology for better understanding of accident causation together with the development of an associated database involving data obtained from on-scene or "nearly onscene" accident investigations. Information from these investigations was complemented by data from follow-up interviews with crash participants to determine critical events and contributory factors to the accident occurrence. A method for classification of accident contributing factors, known as DREAM 3.0, was developed and tested in conjunction with the SafetyNet activities. Collection of data and case analysis for some 1 000 individual crashes have recently been completed and inserted into the database and therefore aggregation analyses of the data are now being undertaken. This paper describes the methodology development, an overview of the database and the initial aggregation analyses.
Nowadays, traffic accidents are recorded in historical databases. Regarding the huge quantity of data, the use of data mining tools is essential to help Experts, for automatically extracting relevant information in order to establish and quantify relations between severity and potential factors of accidents. An innovative approach is here proposed for an in depth investigation of real world accidents data base. Mutual information ratio based on conditional entropies is used to quantity the association strength between an accident outcome descriptor (injury severity) and other potential association factors. Information theoretic methods help to select automatically groups of factors mostly responsible of the severity of accident.
A lot of factors are related to a road traffic accident; particularly human factors such as road use characteristic, driving maneuver characteristic and safety attitude are the major ones. As a random factor is also included, so it is necessary to minimize the contribution of a random factor to identify human factors related to a road traffic accident. There are several standpoints for traffic accident analysis, such as vehicle-based, location-based and driver-based. And it is effective to analyze driver-based traffic accident data for discussion on the relation between human factors and accidents. An integrated traffic accident database system was developed for analysis considering driver- accident and violation records by ITARD, and several studies were carried out for the evaluation. Useful data for discussion on the relation between types of collision and traffic violations, and the effect of accident experience to the following accident were obtained.
Methods for analyzing the efficiency of primary safety measures based on real life accident data
(2009)
Primary safety measures are designed to help to avoid accidents or, if this is not possible, to stabilize respectively reduce the dynamics of the vehicle to such an extent that the secondary safety measures are able to act as good as possible. The efficiency of a primary safety measure is a criterion for the effectiveness, with which a system of primary safety succeeds in avoiding or mitigation the severity of accidents within its range of operation and in interactionwith driver and vehicle. Based on Daimler-´s philosophy of the "Real Life Safety" the reflection of the real world accidents in the systems range of operation is both starting point as well as benchmark for its optimization. This paper deals with the methodology to perform assessments of statistical representative efficiency of primary safety measures. To be able to carry out an investigation concerning the efficiency of a primary safety measure in a transparent and comparable way basic definitions and systematics were introduced. Based on these definitions different systematic methods for estimating efficiency were discussed and related to each other. The paper is completed by presenting an example for estimating the efficiency of actual "single" and "multi" connected primary safety systems.
A lack of representative European accident data to aid the development of safety policy, regulation and technological advancement is a major obstacle in the European Union. Data are needed to assess the performance of road and vehicle safety and is also needed to support the development of further actions by stakeholders. This short-paper describes the process of developing a data collection and analysis system designed to partly fill these gaps. A project team with members from 7 countries was set up to devise appropriate variable lists to collect fatal crash data under the following topic levels: accident, road environment, vehicle, and road user, using retrospective detailed police reports (n=1,300). The typical level of detail recorded was a minimum of 150 variables for each accident. The project will enable multidisciplinary information on the circumstances of fatal crashes to be interpreted to provide information on a range of causal factors and events surrounding the collisions.
The Powered Two Wheelers (PTWs) accidents constitute one of the road safety targets in Europe. PTWs users' fatalities represent 15% of EU road fatalities, having increased the last few years, which is quite opposite than other road users casualties. To reduce PTW accidents is necessary to know which the accident causations are from different points of view (human factor, vehicle characteristics, environment, type of accident, situation, etc.). In TRACE project ("Traffic Accident Causation in Europe", under the European Commission 6th Framework Program, 2006-2008,) a specific task was focused on PTW users point of view, analyzing extensive databases to locate the main accident configurations (type of accident, severity, frequency), and an in-depth database to obtain the causation factors, the risk factors for each configuration founded in the extensive databases analysis and the variables associated to each causation factor in the PTW configurations.
It is well known that motorcycle riding is fascinating but quite more dangerous than for example car driving. In 2006, 5,091 persons were killed as victims of crashes occurring on public roads in Germany. 52% (2,683) were car occupants, 16% (793) motorcycle riders, 14% (711) pedestrians, 10% (486) bicycle riders, 5% (235) commercial vehicle occupants, 2% (107) riders of smaller powered two-wheelers, called "Mofa, Moped and Mokick". This shows that motorcycle riders recently are the second largest group of killed traffic participants in Germany. Latest information coming from the Federal Statistics predict for the year 2007 the figure of 4,958 killed road victims in total. This would be again a successful reduction (-133 killed persons or "2.6% compared to the year 2006). But the news coming from the Federal Statistics during the year 2007 and at the begin of 2008 did not always tell the same positive story. It is questioned whether the positive trend of substantially reduced figures of killed road user year by year will longer continue for Germany. That means it could be impossible to reach the ambitious target, set by the European Commission, to cut in half the figure of killed road users until the year 2010 " compared to the figure for the year 2001. It was reported that the group of 45 to 49 years old traffic participants (all traffic modes) is conspicuous with an increase of 30% up to 297 killed road users in total from January to August 2007. This increase can be ascribed in particular by an increase of killed motorcycle riders within this age group. Due to mild weather conditions in Germany in 2007 the season for motorcycle riding began relatively early and this may be a main reason for the increase of the figure of killed motorcycle riders by 16% from January to August 2007. With this background the accident occurrence of motorcycles became more and more essential. As part of the actual discussion about historical trends, recent emphases, causes and relevant structures of the events of motorcycle crashes it is evident, to have latest and carefully updated figures coming from both the Federal Statistics and In-depth studies. The paper will give a contribution to this using the German Federal Statistics and in-depth studies, for example GIDAS. Additional data coming from the DEKRA Motorcycle Accident Database as well as from literature are considered, too. The paper will help to describe the current situation of the accident involvement of motorcycles in Germany.
Novice drivers are at high risk for crash involvement. We performed an analysis of causations, injury patterns and distributions of novice drivers in cars and on motorcycles in road traffic as a basis for proper measurements. Method Data of accident and hospital records of novice drivers (licence < 2 years) were analysed focusing the following parameters: injury type, localisation and mechanism, Abbreviated Injury Scale (AIS), maximum AIS (MAIS), delta-v, collision speed and other technical parameters and have been compared to those of experienced drivers. In 18352 accidents in the area of Hannover (years1985"2004), 2602 novice drivers and 18214 experienced drivers were recorded having an accident. Novice car drivers were more often and severe injured than experienced and on motorcycles the experienced riders were at higher risk. Novice drivers of both groups sustained more often extremity injuries. 4.5 % novice car drivers were not restraint compared to 3.7 % of the experienced drivers and 6.1 % novice motorcycle drivers did not wear a proper helmet (versus 6.5 %). Severe injuries sustained at a rate of 20 % at collision speeds below 30 km/h and in 80% at collision speeds above 50 km/h. Novice car drivers drove significant older cars. The risk profile of novice drivers is similar to those of drivers older than 65 years. Structural protection and special lectures like skidding courses could be proper remedial action next to harder punishment of violations.
Side impacts, both nearside and farside, have been indicated by research to be responsible for a large proportion of serious injuries from road crashes. This study aimed to compare and contrast the characteristics of nearside and farside crashes in Australia, Germany and the U.S., using the ANCIS, GIDAS and NASS/CDS in-depth-databases, in order to establish the impact and injury severity associated with these crashes, and the types of injuries sustained. The analyses revealed some interesting similarities, as well as differences, between both nearside and farside crashes, and the emergent trends between the three investigated countries. More specifically, it was indicated that whilst the severity of injury sustained in nearside crashes was slightly greater overall than that found for farside crashes, careful consideration of struck and nonstruck side occupants must be made when considering aspects such as vehicle design and occupant protection.
Pedestrian accidents are one of the major concerns related with road accidents around the world. Portugal has one of the highest rates of pedestrian fatalities in Europe. In this paper an overview conditions were the pedestrian accidents occurred in Portugal is presented. In the last years, a project related with the pedestrian accidents has run in Portugal for the period 2004-2006 where 603 people died, 2097 have been severely injured and about 17000 slightly injured. Within this project all the pedestrian accidents in this period have been analysed providing global information about a wide range of aspects, since location, driver and pedestrian characteristics, weather and road conditions, among others. In addition, 50 in-depth accidents have been investigated and the data collected according the Pendant methodology. For this in-depth methodology detailed information about the accident has been collected, including injuries, vehicle damage, road conditions and road user- behaviour and actions. An accident reconstruction has been carried for each case including the determination of the speeds and driver actions, and the analysis of the contributing factors for the accident. Depending of the accident complexity, different methodologies have been used to analyse these accident, from the classical analytical equations such as Simms and Woods, to the use of detailed computational pedestrian models as those included in the commercial software- PC-Crash-® or Madymo-®. Also one of the goals of our investigation is the development of multibody models and methodologies for the reconstruction of pedestrian accidents. Some of these tools integrated in the commercial software Cosmos Motion-® are presented. The advantages of the different approaches are compared and discussed for some of the accidents investigated. With these tools the impact speed can be determined from the projection distance with analytical tools or PC-Crash-®, but more complex tools should be used to determine speed from the injuries, what is especially important for fatal accidents. The influence of the vehicle geometry and stiffness characteristics is another aspect analysed, where the influence of the vehicle stiffness has been determined using a combined multibody-finite elements approach within the software Madymo-®.
Each year the traffic accident research teams in Dresden and Hanover provide an in-depth investigation of approximately two thousand accidents, aggregated in the GIDAS database. To accomplish a comprehensive review of each traffic accident recorded, a sensible and thorough encoding of suffered injuries is indispensable. The Abbreviated Injury Scale by AAAM offers a valuable and handy solution to achieve this goal. However, there were a few difficulties in the use of the AIS that came up in the past, which let to necessary improvements for the utilization of the AIS 2005 for GIDAS.
In an on-going project since 2005, ADAC has been analyzing accidents documented by the ADAC air rescue service. The knowledge derived from real-life accidents serves as a basis for new test configurations and assessment criteria. In 2007, ADAC began looking into the feasibility of international data collection. The idea of Global Accident Prevention was born. Three European partner clubs have begun pioneering the project (ÖAMTC, ANWB, and RACC). The aim is to set up an international accident research network to provide a steady stream of information on road accidents. The FIA Foundation supports ADAC in developing and coordinating this initiative.
One goal of the assessment of the crashworthiness of passenger cars is to characterize the potential of injury outcome to occupants of cars involved in an accident. This can be achieved by the help of an index that puts the number of injured occupants of passenger cars in relation to the number of cars involved in an accident. As a consequence, this index decreases with a lower potential of injury and rises with a higher number of injuries while assuming a fixed number of accidents. Another index is introduced that uses an economical weighting of each injury level. The consequential injury costs are calculated using the average economical costs for lightly, severely and fatally injured persons. The calculation of the safety indices is based on an anonymized sample of accident data provided by the Federal Statistical Office. An index of Mercedes passenger car drivers depending on the year of registration between 1991 and 2006 is compared to the index of drivers of cars of other makes within the same range of registration years.
The Centre for Automotive Safety Research (formerly the Road Accident Research Unit) at the University of Adelaide in South Australia has a history of in-depth crash investigation going back to the 1970s. In recent years, our focus has been on studying factors that contribute to road crashes, with an emphasis on the role of road infrastructure. Our method involves crash notification by the South Australian Ambulance Service and detailed investigation of the crash scene usually before the crash-involved vehicles have been moved. This at-scene data collection is supplemented with police crash reports, Coroner- reports including autopsy findings for fatal crashes, case notes from hospitals for all injured persons, structured interviews with crash participants and witnesses, and computerised reconstruction of the events of the crash. One of the most notable research findings to emerge from our in-depth work has been the relationship between travelling speed and the risk of crash involvement. By comparing the calculated free speeds of crash-involved vehicles (cases) with the measured speeds of non-crash-involved vehicles travelling on the same roads at the same time of day (controls), we were able to establish that an exponential relationship exists between travelling speed and the likelihood of involvement in a casualty crash. This was the case for both metropolitan and rural areas. This research prompted the reduction of some speed limits in Australia, which has resulted in notable decreases in crash numbers. Another finding of interest in our recent investigation of 298 mostly daytime crashes in metropolitan Adelaide was that medical conditions make a sizeable contribution to the occurrence of road crashes. We found that almost half of the drivers, riders and pedestrians involved in the collisions had at least one pre-existing medical condition, and half of these individuals had two or more such conditions. We found that a medical condition was the direct causal factor in 13% of the casualty crashes investigated and accounted for 23% of all hospital admission or fatal crash outcomes. A follow-up study of all hospital admissions for road crashes in Adelaide is now going ahead to look further at this problem. The paper also describes studies looking specifically at pedestrian crashes. These include studies of the relationship between travelling speed and the risk of a fatal pedestrian crash, and studies utilising real crash data to validate headforms and test dummies used in the assessment of the safety of new vehicles in the event of a collision with a pedestrian.
Today, Euro NCAP is a well established rating system for passive car safety. The significance of the ratings must however be evaluated by comparison with national accident data. For this purpose accidents with involvement of two passenger cars have been taken from the German National Road Accident Register (record years 1998 to 2004) to evaluate the results of the NCAP frontal impact test configuration. Injury data from both drivers involved in frontal car to car collisions have been sampled and have been compared, using a "Bradley Terry Model" which is well established in the area of paired comparisons. Confounders " like mass ratio of the cars involved, gender of the driver, etc. " have been accounted for in the statistical model. Applying the Bradley Terry Model to the national accident data the safety ranking from Euro NCAP has been validated (safety level: 1star <2 star <3 star <4 star). Significant safety differences are found between cars of the 1 and 2 star category as compared to cars of the 3 and 4 star category. The impact of the mass ratio was highly significant and most influential. Changing the mass ratio by an amount of 10% will raise the chance for the driver of the heavier car to get better off by about 18%. The impact of driver gender was again highly significant, showing a nearly 2 times lower injury risk for male drivers. With regard to the NCAP rating drivers of a high rated car are more than 2 times more probable (70% chance) to get off less injured in a frontal collision as compared to the driver of a low rated car.
Automotive Engineering, Mechanical Engineering and TechnologyrnAbstract: The degrees of injury severity, as a rule injuries scaled by AIS of specific regions of the human body, investigated out of road traffic accidents correspond to the body-specific loading values, which are found out with the aid of experimental or mathematical simulation of crash tests with motor vehicles or with sled tests. The coherence between the injured human being on the one hand and the physical and the theoretical model respectively on the other hand is established by the risk function, which describes the probability of degrees of injury severity in dependence on the protection criteria. Due to the different physical characteristics in the simulation, e.g. accelerations, forces, compressions and their velocity, the compilation of these quantities, comparable to the MAIS, the maximal occurred single AIS obtained in accident analysis is much more difficult in the simulation than in the accident occurrence. Therefore it is obvious to normalize the loading values gained out of simulation and to summarise them to an entire value in a suitable manner, the safety index.rn
Bicyclists are minimally or unprotected road users. Their vulnerability results in a high injury risk despite their relatively low own speed. However, the actual injury situation of bicyclists has not been investigated very well so far. The purpose of this study was to analyze the actual injury situation of bicyclists in Germany to create a basis for effective preventive measures. Technical and medical data were prospectively collected shortly after the accident at the accident scenes and medical institutions providing care for the injured. Data of injured bicyclists from 1985 to 2003 were analyzed for the following parameters: collision opponent, collision type, collision speed (km/h), Abbreviated Injury Scale (AIS), Maximum AIS (MAIS), incidence of polytrauma (Injury Severity Score >16), incidence of death (death before end of first hospital stay). 4,264 injured bicyclists were included. 55% were male and 45% female. The age was grouped to preschool age in 0.9%, 6 to 12 years in 10.8%, 13 to 17 years in 10.4%, 18 to 64 years in 64.7%, and over 64 years in 13.2%. The MAIS was 1 in 78.8%, 2 in 17.0%, 3 in 3.0%, 4 in 0.6%, 5 in 0.4%, and 6 in 0.2%. The incidence of polytrauma was 0.9%, and the incidence of death was 0.5%. The incidence of injuries to different body regions was as follows: head, 47.8%; neck, 5.2%, thorax, 21%; upper extremities, 46.3%; abdomen, 5.8%; pelvis, 11.5%, lower extremities, 62.1%. The accident location was urban in 95.2%, and rural in 4.8%. The accidents happened during daylight in 82.4%, during night in 12.2%, and during dawn/dusk in 5.3%. The road situation was as follows: straight, 27.3%; bend, 3.0%; junction, 32.0%; crossing, 26.4%; gate, 5.9%; others, 5.4%. The collision opponents were cars in 65.8%, trucks in 7.2%, bicycles in 7.4%, standing objects in 8.8%, multiple objects in 4.3%, and others in 6.5%. The collision speed was grouped <31 in 77.9%, 31-50 in 4.9%, 51-70 in 3.7%, and >70 in 1.5%. The helmet use rate was 1.5%. 68% of the registered head injuries were located in the effective helmet protection area. In bicyclists, head and extremities are at high risk for injuries. The helmet use rate is unsatisfactorily low. Remarkably, two thirds of the head injuries could have been prevented by helmets. Accidents are concentrated to crossings, junctions and gates. A significant lower mean injury severity was observed in victims using separate bicycle lanes. These results do strongly support the extension or addition of bicycle lanes and their consequent use. However, the lanes are frequently interrupted at crossings and junctions. This emphasizes also the important endangering of bicyclists coming from crossings, junctions and gates, i.e. all situations in which contact of bicyclists to motorized vehicles is possible. Redesigning junctions and bicycle traffic lanes to minimize the possibility of this dangerous contact would be preventive measures. A more consequent helmet use and use and an extension of bicycle paths for a better separation of bicyclists and motorized vehicle would be simple but very effective preventive measures.
In recent years special attention has been paid to reducing the number of fatalities resulting from road traffic accidents. The ambitious target to cut in half the number of road users who are killed each year by 2010 compared with the 2001 figures, as set out in the European White Paper "European Transport Policy for 2010: Time to Decide" implies a general approach covering all kinds of road users. Much has been achieved, e.g. in relation to the safety of car passengers and pedestrians but PTW accidents still represent a significant proportion of fatal road accidents. More than 6,000 motorcyclists die annually on European roads which amounts to 16% of the EU-15 road fatalities. The European Commission therefore launched in 2004 a Sub- Project dealing with motorcycle accidents within an Integrated Project called APROSYS (Advanced PROtection SYStems) forming part of the 6th Framework Programme. In a first step, the combined national statistical data collections of Germany, Italy, the Netherlands and Spain were analysed. Amongst other things parameters like accident location, road conditions, road alignment and injury severity have been explored. The main focus of the analysis was on serious and fatal motorcycle accidents and the results showed similar trends in all four countries. From these results 7 accident scenarios were selected for further investigation via such in-depth databases as the DEKRA database, the GIDAS 2002 database, the COST 327 database and the Dutch element of the MAIDS database. Three tasks, namely the study of PTW collisions with passenger cars, PTW accidents involving road infrastructure features, and motorcyclist protective devices have been assessed and these will concentrate inter alia on accident causes, rider kinematics and injury patterns. A detailed literature review together with the findings of the in-depths database analysis is presented in the paper. Conclusions are drawn and the further stages of the project are highlighted.
Empirical vehicle crashworthiness studies are usually based on national or in-depth traffic accident surveys: Data on accident-involved cars/drivers are analysed in order to quantify the chance of driver injury and to assess certain risk factors like car make and model. As the cars/drivers involved in the same accident form a "cluster", where the size of the cluster equals the number of accident-involved parties, traffic accident survey data are typical multi-level data with accidents as first-level or primary and cars/drivers as secondlevel or secondary units (car occupants in general are to be considered as third level units). Consequently, appropriate statistical multi-level models are to be used for driver injury risk estimation purposes as these models properly account for the cluster structure of traffic accident survey data. In recent years various types of regression models for clustered data have been developed in the statistical sciences. This paper presents multi-level statistical models, which are generally applicable for vehicle crashworthiness assessment in the sense that data on single and multiple car crashes can be analysed simultaneously. As a special case of multi-level modelling driver injury risk estimation based on paired-by-collision car/driver data is considered. It is demonstrated that assessment results may be seriously biased, if the cluster structure inherent in traffic accident survey data is erroneously ignored in the data analysis stage.
Internationally, the need is expressed for harmonized traffic accident data collection (PSN, PENDANT, etc.). Together with this effort of harmonization, traffic accident investigation moves more and more in the direction of accident causation. As current methods only partly address these needs, a new method was set up. The main characteristics of this method are: • Accident/injury causation (associated) factors can objectively be identified and quantified, by comparison with exposure information from a normal population. • All relevant accident and exposure data can be included: human-, vehicle-, and environmental related data for the pre-crash, crash and postcrash situation (the so-called Haddon matrix). The level of detail can be chosen depending on interest and/or budget, which makes the method very flexible. In this paper the accident collection and control group method are presented, including some of the achieved results from a pilot study on 30 truck accidents and 30 control locations. The data were analyzed by using cross-tabulations and classification-tree analysis. The method proved useful for the identification of statistically significant causational aspects.
In Germany, in-depth accident investigations are carried out in the Hannover area since 1973. In 1999 a second region was added with surveys in Dresden and the surrounding area. Internationally, the acronym GIDAS (German In-Depth Accident Study) is commonly used for these surveys. Compared to many other countries, the sample sizes of the GIDAS surveys are much larger. The goal is to collect 1.000 accidents involving personal injuries per year and region. Data collection takes place by using a sampling procedure, which can be interpreted as a two-stage process with time intervals as primary units and accidents as secondary units. An important question is, to what extend these samples are representative for the target population from which they are drawn. Analyses show, for example, that accidents with persons killed or seriously injured are overrepresented in the samples compared to accidents with slightly injured persons. This means, that these data are subject to biases due to uncontrolled variation of sample inclusion probability. Therefore, appropriate weighting and expansion methods have to be applied in order to adjust or correct for these biases. The contribution describes the statistical and methodological principles underlying the GIDAS surveys with respect to sampling procedure, data collection and expansion. In addition, some suggestions regarding potential improvements of study design are made from a methodological point of view.
Annually within the European Union, there are over 50,000 road accident fatalities and 2 million other casualties, of which the majority are either the occupants of cars or other road users in collision with a car. The European Commission now has competency for vehicle-based injury countermeasures through the Whole Vehicle Type Approval system. As a result, the Commission has recognised that casualty reduction strategies must be based on a full understanding of the real-world need under European conditions and that the effectiveness of vehicle countermeasures must be properly evaluated. The PENDANT study commenced in January 2003 in order to explore the possibility of developing a co-ordinated set of targeted, in-depth crash data resources to support European Union vehicle and road safety policy. Three main work activity areas (Work Packages) commenced to provide these resources. This paper describes some of the outcomes of Work Package 2 (WP2, In-depth Crash Investigations and Data Analysis). In WP2, some 1,100 investigations of crashes involving injured car occupants were conducted in eight EU countries to a common protocol based on that developed in the STAIRS programme. This paper describes the purposes, methodology and results of WP2. It is expected that the results will be used as a co-ordinated system to inform European vehicle safety policy in a systematic, integrated manner. Furthermore, the results of the data analyses will be exploited further to provide new directions to develop injury countermeasures and regulations.
While the number of fatal accidents is diminishing every year, there is still a need of improvement and action to prevent these deaths. Basis for this purpose has to be an analysis about the factors influencing the car crash mortality. There are various studies describing the univariate influence of several factors, but crash scenarios are too complex to be described by a single variable. The multivariate analysis respects the interference of the variables and gets so to more detailed and representative results. This multivariate analysis is based on about 2,600 cases (the data have been collected by the accident research units Hannover and Dresden (during the years 1999-2003). This paper presents a multivariate model (containing ten different variables) which detects 93% of these cases properly. This means it detects the cases as truly survived and truly death.
The need for improved EU level accident information and data was identified in the EU White Paper on Transport Policy (2001)1 and detailed in the Road Safety Action Plan (2003)2. The plan specifies that the EC will develop a road safety observatory to coordinate data collection within an integrated framework.
Electronic Stability Program (ESP) aims to prevent the lateral instability of a vehicle. Linked to the braking and powertrain systems, it prevents the car from running wide on a corner or the rear from sliding out. It also helps the driver control his trajectory, without replacing him, in the case of loss of control where the driver is performing an emergency manoeuvrer (confused and exaggerated steering wheel actions). A new ESP function optimizes ESP action in curves with hard under steering (situations in which the front wheels lose grip and the vehicle slides towards the outside of the curve). A complementary feature prevents the wheels from spinning when pulling away and accelerating. The name given to the ESP system varies according to the vehicle manufacturer, but other terms include: active stability control (ASC), automotive stability management system (ASMS), dynamic stability control (DSC), vehicle dynamic control (VDC), vehicle stability control (VSC) or electronic stability Control (ESC). This paper proposes an evaluation of the effectiveness of ESP in terms of reduction of injur accidents in France. The method consists of 3 steps: - The identification, in the French National injury accident census (Gendarmerie Nationale only), of accident-involved cars for which the determination of whether or not the car was fitted with ESP is possible. A sample of 1 356 cars involved in injury accidents occurred in 2000, 2001, 2002 and 2003 was then selected. But we had to restrict the analysis to only 588 Renault Lagunas. - The identification of accident situations for which we can determine whether or not ESP is pertinent (for example ESP is pertinent for loss of control accidents whilst it is not for cars pulling out of a junction). - The calculation, via a logistic regression, of the relative risk of being involved in an ESPpertinent accident for ESP equipped cars versus unequipped cars, divided by the relative risk of being involved in a non ESP-pertinent accident for ESP equipped cars versus unequipped cars. This relative risk is assumed to be the best estimator of ESP effectiveness. The arguments for such a method, effectiveness indicator and implicit hypothesis are presented and discussed in the paper. Based on a few assumptions, ESP is proved to be highly effective. Currently, the relative risk of being involved in an ESP pertinent accident for ESP-equipped cars is lower (-44%, although not statistically significant)rnthan for other cars.rn
This paper reviews briefly the evolution of the investigation of transport accidents from the early beginnings when individual events were studied but systematic data was not collected. In the transport modes other than on the roads, accident investigation early on, even of single events, was important in introducing safety improvements. Road accidents, however, evolved enormously with the growth of car ownership without any comparable political response to the consequent deaths and injuries, equivalent to what happened with the other modes. From the 1950s data bases started to contribute to our knowledge of the epidemiology of road traffic injuries, and in-depth sample studies have contributed much to the body of knowledge in the last 30 years. However, even the basic input and output variables of a crash, its severity and the seriousness of the outcomes in terms of injuries and their consequences are not complete or agreed upon. Issues of experimental design and sampling are discussed. It is proposed that the most important area for current research to address is the effect of population variations on injury outcomes. The need for the establishment of good data bases for active safety issues is emphasised with the consequent need for better links between the research community and the police.
Traffic accidents were ranked the third among the major causes of death in Thailand. About 13,438 deaths and the death rate from traffic accident was 21.5 per 100,000 of population in 2002. The deaths and death rate varied upon the economic situation. After the economic crisis, traffic accidents were increased as well as the period of the bubble economy. In the Central region of Thailand numbers of road traffic crashes were lower than Bangkok Metropolis, but the highest in the number of deaths, death rate and serious injuries in 2002. Men aged 15"29 years old had higher numbers of deaths than men in other age groups and higher than women. Deaths and injuries from road traffic crashes were the highest in April and January, because there was a long weekend in those months. About 80 percent of road traffic crashes were caused by private car and motorcycle. In 2000 about 51 percent of traffic accidents took place on the straight way, followed by the junction and curves. In 2002, about 97 percent of road traffic crashes were caused by human factors including improper passing, speeding and disregarding to traffic signal, however, the identification of causes of traffic accident needed to improve. Drunk driving, disregarding on safety equipment usage, inefficiency of law enforcement and discontinuing of road safety programs were the deepest causes of traffic accidents. Research based information, a broad coalition of stakeholder and urban planning policy were needed to incorporate for a comprehensive road safety policy formulation and actions.
This report gives an overview of pedestrian accidents on Japanese roads. Database used for the analysis is national traffic accident data based on police reports. Relevant measures and background information ranging from vehicle safety, engineering and education are briefly reviewed, and area for further improvement is discussed.rn
Road safety is a major preoccupation of the European Commission and the road transport industry and depends on numerous significant factors. In order to improve road safety and to plan effective safety improvement actions for truck transport, we must first identify the problems to be addressed, i.e. what are the main causes of truck accidents. The ETAC project, initiated by the European Commission and the IRU, was launched in order to set up a heavy goods vehicle accident causation study across European countries to identify future actions which could contribute to the improvement of road safety. The results will be based on a detailed analysis of truck accident data collected in seven European countries according to a common methodology which has been elaborated through numerous national and European projects. This paper describes the common methodology used to collect the information on the scene of the accident and to analyse the data so that the reconstruction of the crash events may be carried out. CEESAR proposes a methodology using its experience gained from over 10 years of accident data collection. This methodology is based on an in-depth investigation of the parameters involved in-an accident and linked to the driver, the vehicle, the road and their environment. In-depth investigation requires accident investigator presence on the scene of the accident in order to collect volatile information such as marks on the road, weather conditions, visibility, state and equipment of the vehicle, driver interview. Later, passive and active information is gathered, either at the hospital for the driver, at the garage for the vehicle or on the spot for the road geometry. A reconstruction carried out with the help of specific software and the analysis of the data collected and calculated enables the identification of the main causes of the accident and the future actions to plan in order to improve road safety as regards truck traffic.
Motorcycle riders are one of the most vulnerable road users. Annually, on estimate 6000 people are killed in motorcycle accidents in the former 15 EU countries. The objective of this research was to investigate and analyze the main aspects and causes of this vulnerability and the accidents in general. For this aim around 70 accidents in The Netherlands were investigated in the framework of an international research program (MAIDS). Also a control group of motorcycles with riders was investigated so that exposure could be taken into account. An important result is that human failure is in 82% of the cases the main cause of the accident, in 52% this is due the other vehicle driver. Perception and decision failures are the most common failures. The most injuries are caused by the environment but they are typically only less severe (AIS1). Injuries caused by the car (front and side) are typically severe injuries (AIS4+). Previous convictions of the MC rider seem to be related to the chance to get involved in an accident. It was shown that the Dutch and the total MAIDS accident sample are comparable.
Portugal has the highest rate of road fatalities in Europe (2002 and for Eur-15 - CARE database). For this highest rate, the accidents involving pedestrians and motorcycle occupants have a higher contribution than the European average. In the last years, especially accidents involving motorcycles have been investigated and currently two different projects are being carried out, one related with motorcycles accidents and the other with pedestrian accidents. In these projects, countermeasures among others to reduce the fatalities between these two types of road users are being studied. These accidents are investigated with the commercial accident reconstruction software PCCRASH but also new methodologies based on multibody dynamics are in development in order to more accurately study these two types of accidents. In this paper, the methodologies in use for accident reconstruction and new methodologies in development are presented. Speeding his found to be one of the major causes of road fatalities for pedestrians and motorcycle occupants. In the case of motorcycle accidents, these involve mainly young drivers. Aspects as social behavior are also important to understand the causes of some of these accidents. Some examples of accidents occurring in Portugal, involving especially motorcycles and pedestrians are presented and discussed.
Data concerning accidents involving personal injury which have been collected in the context of in-depth investigations on scene in the Hannover area since 1973 and in the Dresden area since 1999 represent an important basis for empirical traffic safety research. At national and international level various analyses and comparisons are carried out on the basis of "in-depth data" from the above mentioned investigations. In-depth data play a decisive role e.g. within the validation of EuroNCAP results on secondary safety (crashworthiness) of individual passenger car models. Thus, statistically sound methods of data analysis and population parameter estimation are of high importance. Since the 1st of August 1984 the "in-depth investigations on scene" in the Hannover area have been carried out according to a sampling plan developed by HAUTZINGER in the context of a research project on behalf of BASt. In the meantime a second region of in-depth investigation on scene was added with surveys in Dresden and the surrounding area. Internationally, the acronym GIDAS (German In-Depth Accident Study) is commonly used for the two above mentioned surveys. The objective of a current research project (topic of this contribution) is, among other things, to examine and adjust the previous weighting and expansion method for the two regional accident investigations to the current general conditions.
Due to recent years accident avoidance and crashworthiness on Austrian roads were mostly developed on national statistics and on-scene investigation respectively. Identification and elimination of black spots were main targets. In fact many fatal accidents do not occur on such black spots and black-spot investigation has reached a limit. New methods are required and therefore the Austrian Road Safety Programme was introduced by the Austrian Ministry of Transport, Innovation and Technology. The primary objective is the reduction of fatalities and severe injuries. Graz University of Technology initiated the project ZEDATU (Zentrale Datenbank tödlicher Unfälle) with the goal to identify similarities in different accident configurations. A matrix was established which categorizes risk and key factors of participating parties. Based on this information countermeasures were worked out.
NASS: the glass is half full
(2007)
The National Accident Sampling System (NASS) was born in the late 1970s. It was based on a substantial amount of experience and analysis of what was needed in the United States to understand the safety challenges of our highways. This work also showed how to collect high quality and useful crash data efficiently. Unfortunately, when Ronald Reagan - a President who believed in limited government - was elected, any hope of full funding for NASS was lost. The concept of 75 teams investigating about 18,000 serious crashes in detail annually was never realized. The system got up to 50 teams, then was cut to 36, and finally to 24 teams investigating fewer than a quarter of the originally anticipated number of crashes per year. Despite this, the NASS investigations provide a rich source of data, collected according to a sophisticated statistical sampling system to facilitate detailed national estimates of road casualties on our nation- highways and their causes. In addition, changes have been made in recent years to increase the number of more serious crashes of recent model vehicles to make the results more relevant to improving vehicle safety. A recent, detailed examination of hundreds of rollovers has provided considerable insight into rollover casualties and into what can be done to reduce them. Some of these results will be presented that show the value of the NASS system. Our experience with NASS and the Fatal Accident Reporting System (FARS) suggests a number of improvements that could be made in the United States" crash data systems. It also provides justification for a doubling or tripling of our national expenditures on crash data collection.
This study examines the severity and types of injuries sustained by child pedestrians aged 18 years and below in order to identify the body regions at greatest risk for injury in a pedestrian accident. Detailed medical diagnoses were reviewed retrospectively for 572 child pedestrians admitted to an urban pediatric trauma center with injuries during the time period from January 2001 to December 2005. Eighty percent of these children sustained AIS 2 or greater injuries, most commonly to the lower extremity (41%) and head (34%). Fortyfour percent of admitted children had more significant AIS 3 or greater injuries primarily to the head (58%), thorax (17%) and lower extremities (14%). Testing procedures to assess the child- interaction with the motor vehicle should include injury assessment for the pediatric head, thorax and lower extremities. This understanding of how child pedestrians interact with motor vehicles may provide insight into effective countermeasures with potential for implementation in vehicle designs world-wide.
In the context of this study, different data sources for accident research were examined regarding their possible data access and evaluated concerning the individual quality and extent of the data. Analyses of accidents require detailed and comprehensive information in particular concerning vehicle damages, injury patterns and descriptions of the accident sequence. The police documentation supplies the basic accident statistics and is amended in the context of the forensic treatment by further information, e.g. by medical and technical appraisals and witness questionings. As a new approach to the data acquisition for the analysis of fatal traffic accidents, the information was made usable which was collected by the police and by the investigations of the public prosecutor. The best strategy for obtaining reliable, extensive and complete data consists of combining the information from these two sources: the very complete, but elementary statistic data of the Niedersächsisches Landesamt für Statistik (Lower Saxony State Authority of Statistics), based on the police documentation as well as the very extensive accident information resulting from the investigation documentation of the public prosecutor after conclusion of the procedure, the so-called Court Records. Of all 715 fatal traffic accidents, which happened in the year 2003 in the German State of Lower Saxony, 238 cases were selected by means of a statistically coincidental selective procedure based on a statistically representative manner (every third accident). These cases cover the investigation documents of the 11 responsible public prosecutor- offices, which were requested and evaluated while preserving the data security. Of the 238 cases 202 cases were available, which were individually coded and stored in a data base using 160 variables. Thus a data base of a sample of representative data for fatal accidents in Lower Saxony was set up. The data base contains extensive information concerning general accident data (35 variables), concerning road and road surface data (30 variables), concerning vehicle-specific data (68 variables) as well as concerning personal and injury data (27 variables).