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In spite of today's highly sophisticated crash test procedures like the different NCAP programs running world-wide, bad real world crash performance of cars is still an issue. There are crash situations which are not sufficiently represented by actual test configurations. This is especially true for car to car, as well as for car to object impacts. The paper describes reasons for this bad performance. The reasons are in principal bad structural interaction between the car and its impact partners (geometric incompatibility), unadjusted front end stiffness (stiffness incompatibility) and collapse of passenger compartments. To show the efficiency of improving cars' structural behaviour in accidents with different impact partners an accident data analysis has been taken out by members of European Project VC-COMPAT. Accident data analysis has shown that in Germany between 15,000 and 20,000 of the now severely injured car occupants might get less injured and between 600 and 900 car occupant fatalities might be saved. Similar results arise for the UK.
Rollover scenarios in Europe
(2005)
Rollover accidents seem to be a rising problem in Europe and therefore the systematic of this accident scenario should be investigated. Based on statistical investigations on major European accident databases for different countries a series of 73 real world rollover accidents was analysed. These cases were reconstructed using PC-Crash and preliminary categorised using a modified USbased rollover classification. In a first step, the rollover events were reconstructed from the point of conflict to the vehicle- rest position. The vehicles kinematics as well as its linear and rotational velocities were derived. In a second step typical velocity characteristics as well as kinematics were identified and the events categorised according to these criteria. Based on these results four main categories were defined, covering all reconstructed accidents. This categorisation was based on mechanical parameters (rotatory and translator kinematical data of the vehicle). Significant differences can be seen for different scenarios for the "first phase of rollover".
In den Technischen Lieferbedingungen für Streckenstationen (TLS), Ausgabe 2002, sind die Anforderungen an Verkehrserfassungsgeräte festgelegt, die auf Bundesfernstraßen in Verkehrsbeeinflussungsanlagen und für die Verkehrsstatistik eingesetzt werden. Je nach Anwendungsgebiet muss das Verkehrserfassungsgerät mit hinreichender Genauigkeit in der Lage sein, die Fahrzeuge in 2, 5+1 oder 8+1 Klassen zu unterscheiden sowie die Fahrzeugmengen und Fahrzeuggeschwindigkeiten zu erfassen. Um die Qualität der Verkehrsdatenerfassung zu sichern, ist in den TLS für die Geräte eine Eignungsprüfung vorgeschrieben. Verkehrserfassungsgeräte, die auf Bundesfernstraßen eingesetzt werden sollen, müssen diese Typprüfung bestehen. Die Prüfmessungen erfolgen im Prüffeld der BASt auf der Bundesautobahn A 4 bei km 92,4 in Fahrtrichtung Köln.
In den Technischen Lieferbedingungen für Streckenstationen (TLS), Ausgabe 2002, sind die Anforderungen an Verkehrserfassungsgeräte festgelegt, die auf Bundesfernstraßen in Verkehrsbeeinflussungsanlagen und für die Verkehrsstatistik eingesetzt werden. Um die Qualität der Verkehrsdatenerfassung zu sichern, ist in den TLS für die Geräte eine Eignungsprüfung vorgeschrieben. Verkehrserfassungsgeräte, die auf Bundesfernstraßen eingesetzt werden sollen, müssen diese Typprüfung bestehen. Die Bundesanstalt für Straßenwesen (BASt) hat auf dem BASt-eigenen Prüffeld für Verkehrserfassungsgeräte das Prüfverfahren erfolgreich erprobt. Die Eignungsprüfungen gemäß TLS können nun bei der BASt beauftragt werden. Beschrieben werden das Prüfverfahren, das Prüffeld auf der BAB A4 und die Aufnahme des Prüfbetriebs und Prüfablaufs.
This paper describes the methodology of In-Depth Investigation in Germany on the example of GIDAS (German In-Depth Accident Study). Since 1999 in Germany a joint project between FAT (Forschungsvereinigung Automobiltechnik or Automotive Industry Research Association) and BASt (Bundesanstalt für Straßenwesen or the Federal Road Research Institute) is being carried out in Hannover and Dresden. The methodology of this project is based on a statistically orientated procedure of data sampling (sampling plan, weighting factors). The paper describes the possibilities of such in-depth investigation on the results of the offered title. The accident cases were collected randomly within GIDAS at Hannover. There are more cases existing from previous investigation started in 1985 under the same methodology. The portion of rollovers can be established at 3.7% of all accidents with casualties in the year 2000. For the study 434 cases of car accidents with rollovers are used for a detail comprehensive analysis. The accidents happened in the years 1994 to 2000 in the Hannover area. The injury distribution will report about 741 occupants with rollover accident event. The presented paper will give an overview of the accident situations following in rollover movements of cars. The distributions of injury frequencies, injury severity AIS for the whole body and for the body regions of occupants will be presented and compared to technical details like the impact speed and the deformation pattern. The speed of the car was determined at the point of rollover and on the point of accident initiency. The characteristics of the kinematics followed in a rollover movement are analyzed and the major defined types of rollover will be shown in the paper. The paper will describe the possibilities of In-Depth Investigation methods for the approach of finding countermeasures on the example of car accidents with rollover and explaining the biomechanics of injuries in rollover movements.
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
This paper set out to examine the possibilities for injury avoidance implications for older drivers in crashes, based on crash and injury patterns among older drivers and current trends in ageing in most western societies. A number of safety technologies were identified and discussed which have potential for improving vehicle older driver crash avoidance and crashworthiness. While there were some promising estimates available of the likely benefits of this technology for improving safety, it is evident that they need to be confirmed for older drivers, given their age-related disabilities and sensory limitations. Further research is urgently required to ensure that these technologies yield safety benefits without any disbenefits for older drivers.rn
Jahresbericht 2004
(2005)
Die Bundesanstalt für Straßenwesen (BASt) ist ein technisch-wissenschaftliches Forschungsinstitut des Bundesministeriums für Verkehr, Bau- und Wohnungswesen. Ihr Tätigkeitsspektrum umfasst schwerpunktmäßig angewandte und praxisnahe Forschung, die interdisziplinärer und immer stärker international angelegt ist, sowie Prüfungen, Zertifizierungen und Akkreditierungen und Beratungs- und Gutachtertätigkeiten in den Aufgabengebieten Straßenbautechnik, Brücken- und Ingenieurbau, Straßenverkehrstechnik, Fahrzeugtechnik, Verhalten und Sicherheit im Verkehr. Im Jahresbericht 2004 wird anhand ausgewählter Beispiele aufgezeigt, an welchen aktuellen Fragestellungen die BASt arbeitet. Die Bundesanstalt für Straßenwesen beschäftigte in 2004 über 400 Mitarbeiter.
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
Interaction of road environment, vehicle and human factors in the causation of pedestrian accidents
(2005)
The UK On-the-Spot project (OTS) completed over 1500 in-depth investigations of road accidents during 2000-2003 and is continuing for a further 3 years. Cases were sampled from two regions of England using rotating shifts to cover all days of the week and all hours of the day and night. Research teams were dispatched to accidents notified to police during the shifts; arrival time to the scene of the accident was generally less than 20 minutes. The methodology of OTS includes sophisticated systems for describing accident causation and the interaction of road, vehicle and human factors. The purpose of this paper is to describe and illustrate these systems by reference to pedestrian accidents. This type of analysis is intended to provide an insight into how and why pedestrian accidents occur in order to assist the development of effective road, vehicle and behavioural countermeasures.