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Institute for Traffic Accident Research and Data Analysis <Tokyo>rnAbstract: Analyses were conducted to clarify the features of rear-end collisions, using an integrated accident database developed by the Institute for Traffic Accident Research and Data Analysis (ITARDA). Focusing on neck injuries in rear-end collisions, analyses were made of the relation to struck-vehicle properties. Regarding the relation to the initial year of registration, the results did not show that newer vehicles tended to have a lower no-neck-injury rate, which was defined in this study as an index. On the contrary, in some passenger car classes, it was observed that the no-neck-injury rate was higher in newer vehicles. The effect of an active head restraint system, which is one type of anti-whiplash device, was analyzed by using not only the no-neck-injury rate but also a regression analysis. The results showed that the effect of an active head restraint system on suppressing the incidence of neck injuries was statistically significant.rn
During the last 5 years, the number of cars fitted with side airbags has dramatically increased. They are now standard equipment, even on many smaller cars or less luxurious vehicles. While some side airbags offer thoracic protection alone, there are those that combine thoracic and head protection (of which most deploy from the seat). Other systems employ separate airbags for head and thorax protection, which are designed to be effective noticeably in a crash against a pole. This paper proposes an evaluation of the effectiveness of side airbags in preventing thoracic injuries to passenger car occupants involved in side crashes. First, the target population (who can take benefit of side airbag deployment and in what circumstances) is defined. Side airbags can be especially effective in cases of impacts on the door with intrusion at a certain impact speed. Then, an example case of a side impact with side airbag deployment is given were side airbag deployment is thought to have had a positive effect on injury outcome. A further case is presented where the impact configuration is likely to have reduced the effect of side airbag deployment on injury outcome. Finally, the estimation of side airbag effectiveness (in terms of additional occupant protection brought exclusively by the airbag) is proposed by comparing injury risk sustained by occupants in (more or less) similar cars (fitted or non fitted with airbags) because, during these years, car structure, and side airbag conception have considerably evolved. In-depth accident data from France, the UK and Germany has been collected. Out of 2,035 side impact accident cases available in the databases, we selected 435 occupants of passenger cars (built from 1998 onwards) involved in an injury accident between year 1998 and year 2004 for EES (Energy Equivalent Speed) values between 20km/h and 50km/h. The occupants, belted or not, were sat on the struck side, whatever the obstacle and type of accidents (intersection, loss of control, etc.). For multiple impact crashes, the side impact is assumed to be the more severe one. Passenger cars were fitted with (96) or without (339) side airbags. Most of the potential risk explanatory variables were correctly and reliably reported in the databases (velocity " impact zone " impact angle " occupant characteristics, etc.). The analysis compared injury risks for different levels of EES and different types of side airbags. A logistic regression model was also computed with injury variables (such as thoracic AIS 2+ or AIS 3+) as the dependant variable and other variables (including airbag type and EES) as explanatory injury risk factors. Results revealed statistically non-significant reductions in thoracic AIS 2+ and AIS 3+ injury risk in side airbag equipped cars in the impact violence range selected (odds ratio between 0.84 and 0.98 depending on types of airbags). The results are discussed. The non-significance is assumed to be due to a low number of cases. Statistical analysis for head injuries was not possible due to the low number of accident cases with passenger cars fitted with head airbags in the databases. Moreover, the discrepancies between the data coming from different countries (especially calculation of EES) might have introduced instability in the analysis.
This paper uses the national accident statistics of Great Britain to evaluate the effectiveness of Electronic Stability Control Systems (ESC) to reduce crash involvement rates. The crash experience of 8,951 cars is analysed and compared to a closely matching set of non-ESC cars using case-control methods. This is one of the largest ESC samples analysed to date. Overall the cars with ESC are involved in 3% fewer crashes although the effectiveness is substantially higher under conditions of adverse road friction. ESC equipped cars are involved in 15% fewer fatal crashes although this reduction represents the combined effect of ESC and passive safety improvements.
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
Optimierung der Fahrerlaubnisprüfung : Ein Reformvorschlag für die theoretische Fahrerlaubnisprüfung
(2005)
Der vorliegende Bericht enthält konzeptionelle Vorschläge, wie es künftig unter Einbeziehung moderner Multimediatechnik bei der theoretischen Fahrerlaubnisprüfung besser gelingen soll, Fahrerlaubnisbewerber ohne ausreichende Befähigung zum Führen von Kraftfahrzeugen zu erkennen. Dafür wurden zunächst der einschlägige prüfungstheoretische Wissensstand aufgearbeitet und Gütekriterien für ein neues Prüfungssystem dargestellt. Weiterhin wurden in einer Reihe von europäischen Ländern Recherchen über Innovationen im Prüfungswesen durchgeführt; diesbezügliche Erfahrungen sind in das vorliegende Prüfungskonzept eingeflossen. Die gegenwärtige Praxis der theoretischen Fahrerlaubnisprüfung erscheint aus heutiger Sicht unter inhaltlichen und methodischen Gesichtspunkten als unbefriedigend. Die Kritik am derzeitigen Prüfungssystem lässt sich auch durch die Verwendung von transponierten computergestützten Versionen der bisherigen Prüfbogen nicht beheben. Deshalb wurden im vorliegenden Prüfungskonzept die Systematik und die Merkmale eines grundsätzlich neuen computergestützten Prüfungssystems dargestellt. Weiterhin wurden die zu erwartenden Prüfungsabläufe sowie die rechtlichen, technischen und organisatorischen Bedingungen für die Einführung dieses Systems einschließlich eines begrenzten Vorlaufprojekts skizziert. Um die wissenschaftliche Reflexion der methodischen Qualität des Prüfungssystems zu sichern, wurden auch Vorschläge für die Evaluation der neuen theoretischen Fahrerlaubnisprüfung entwickelt. Die Einführung des vorgeschlagenen Prüfungskonzepts lässt neben weiteren Vorzügen drei wesentliche Verbesserungen im deutschen Prüfungssystem erwarten: Eine engere Verbindung des Ausbildungsund Prüfungssystems soll die Lernmotivation der Fahrerlaubnisbewerber steigern, eine bessere Visualisierung der Prüfungsaufgaben wird die Ähnlichkeit der Prüfungsanforderungen mit realen Verkehrsanforderungen verbessern, und es wird ermöglicht, nicht nur die Qualität der Prüfungsaufgaben an sich zu analysieren, sondern auch die Vorhersagekraft der Prüfungsergebnisse für die spätere Unfall- und Delinquenzbelastung der Fahranfänger im Straßen-verkehr. Der Bericht enthält neben Vorschlägen zur Optimierung der theoretischen Fahrerlaubnisprüfung auch Anregungen zur ergänzenden Weiterentwicklung der praktischen Fahrerlaubnisprüfung.