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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.
The improvement of passive car security devices led to a reduction of injuries, especially of the head, the neck and the torso mainly due to the airbag function. The passenger's foot and ankle could not profit from this development. Some investigators even reported a progression of leg injuries (1). In this study, we investigated a current collective of patients with foot and ankle fractures or severe soft tissue injuries in relation with defined crash parameters. Special interest was paid to the car's footwell.
In-depth road traffic accident research in Spain is a fairly recent activity. In the past, only accident data that had been retrospectively processed by the national and regional traffic police forces was available. In 1999 Applus+IDIADA set up a permanent accident research unit to carry out indepth analysis of road accidents in Spain. Since then accidents involving cars, motorcycles, coaches and vulnerable road users have been thoroughly studied. The Applus+IDIADA accident research team has carried out work for the various traffic polices in Spain and it is currently involved in several research projects in which accidentology is one of the main tasks. The working methodology of the team is presented in the first part of the paper. In the framework of the European research project "Rollover" (GRD2-2001-50086), Applus+IDIADA has collected data, inspected scenarios and performed virtual reconstructions of twenty-six of the total seventy-six rollover accidents studied. The second half of the paper describes how these accident investigations were used to develop a test procedure for identifying possible improvements to the vehicle structure which augment occupant protection in a rollover scenario. In particular, a proposal for a new drop test for rollover assessment is presented. The cases were analysed for severity, in terms of injury to the occupants and damage to the vehicle, and taking into account whether a seatbelt was worn or not. The worst possible cases were identified as those that had severe occupant injuries and sizable damage to the occupant compartment when seatbelts had been worn. The most severe cases were then analysed further for impact position (roll and pitch angles) and the impact velocity. With these parameters taken into account, the most representative combinations could be found. This resulted in a series of configurations for possible drop tests. The results of the tests indicate where passenger vehicle structures need to be improved in order to increase occupant safety in the event of a rollover crash.
Sedan type vehicles in which adult rear seat passengers were present and which were involved in frontal collisions were investigated, and the influence of unbelted rear seat passengers on the injuries of front seat occupants was studied. Unbelted rear seat passengers move forward during impact. It was observed that there were not only cases in which front seat occupants sustained injuries caused by direct contact with rear seat passengers, but also cases where front seat occupants received severe injuries due to additional force from rear seat passengers, either impacting directly or indirectly as a result of deformation of the front seat. Severe injuries of front seat occupants were observed in the latter cases. This research validates the importance of seat-belt use for rear seat passengers, not only to protect themselves but also to mitigate injuries of front seat occupants.
The number of injuries sustained by car occupants involving the head, thorax, spine, pelvis and the upper limbs have been reduced significantly during recent years. This is probably due to better safety features in the cars, especially the availability and usage of safety belts, airbags etc. Therefore one can notice clinically a relative increase in survivors of severe frontal crashes, but many of them have injuries to the lower extremities. To verify this, we analyzed the foot and ankle injuries of front seat passengers.
Die schnell fortschreitende Entwicklung der Sensortechnologie und der Aktuatorik bietet Ansätze für neuartige Rückhaltesysteme und kann somit den Schutz des Insassen bei Unfällen erheblich verbessern. Kommende Generationen adaptiver Rückhaltesysteme werden eine dosierte Aktivierung der Schutzwirkung (z.B. mehrstufige Airbags oder Gurtstraffer) abhängig von der Unfallschwere und der Fahrzeugbesetzung erlauben. Um solche Systeme voll auszunutzen, werden Sensoren entwickelt, die die Schwere eines Unfalls in weitaus höherer Auflösung als bisher erkennen können und somit das Einleiten adaptiver Maßnahmen ermöglichen. Diese Systeme werden unter dem Begriff der intelligenten oder adaptiven Rückhaltesysteme zusammengefasst. Ziel des Projektes "Intelligente Rückhaltesysteme" ist es, die möglichen Verbesserungen der passiven Sicherheit durch die neuen Technologien zu analysieren und darzustellen. Außerdem sind die Auswirkungen auf die gesetzlichen Regelungen zu untersuchen, um so mögliche zusätzliche Schutzpotentiale schnell umzusetzen und eventuelle Risiken zu vermeiden. In einer umfangreichen Literaturrecherche wurde zum einen das Unfallgeschehen analysiert. Ergänzend wurden die Schwerpunkte des Pkw-Unfallgeschehens durch eine Auswertung von Unfalldaten der GIDAS untersucht und dargestellt. Zum anderen wurde der Stand der Technik heutiger und zukünftiger Rückhaltesysteme aufgearbeitet und systematisiert. Dabei wurden die bestehenden und zukünftigen Systeme in ihrer Funktionsweise analysiert und durch ein 3-Ebenen-Modell charakterisiert. Mit Hilfe des Abgleichs der Schwerpunkte des realen Unfallgeschehens mit den RHS und der bestehenden Gesetzgebung wurden Potenziale und Wirkbereiche möglicher Maßnahmen skizziert. Auf der Basis einer Expertenbefragung konnten der Entwicklungsstand der iRHS aufgezeigt und Vorschläge zur Erweiterung der bestehenden Sicherheitsgesetzgebung gemacht werden.