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Analysis of test tools for evaluation of contact-based sensor systems for pedestrian detection

机译:用于评估行人检测的基于接触的传感器系统的测试工具的分析

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Active systems of the passive vehicle safety, like deployable bonnets or external airbags, are installed in series vehicles since 2005 to fulfil pedestrian protection requirements. However, an appropriate test procedure for these systems was not available until 2010, when Euro NCAP published a revised version of the pedestrian test protocol (version 5.2). In this test protocol, a test method to evaluate contact-based sensor systems for pedestrian detection using so-called hardest-to-detect impactors is described. These impactors shall reproduce the lowest possible impact load induced in the vehicle front in case of a collision with a pedestrian, which is strongly dependent on the anthropometry of the pedestrian as well as the impact configuration. In this paper a holistic analysis of the accident kinematics of pedestrian-vehicle collisions and resulting loads induced in the vehicle front is conducted. The vehicle front is modelled using a generic vehicle buck, which is specifically designed for this analysis. As can be observed by the conducted simulations, the pedestrian size inducing the lowest possible impact load varies for different vehicle categories. Thus, it is not sufficient to consider only one pedestrian size. The comparison of these vehicle-pedestrian simulations with the loads being induced by three hardest-to-detect impactors shows that none of the three impactors is able to reproduce the 'worst-case scenario' for all analysed four vehicle categories. The results of this study, which was conducted on behalf of and funded by the German Federal Highway Research Institute (BASt), could be used for the development of a suitable, effective and objective test procedure for active systems of the passive vehicle safety with regard to pedestrian protection.
机译:自2005年起,为满足行人保护的要求,在可串联车辆中安装了主动安全性主动系统,例如可展开式引擎盖或外部安全气囊。但是,直到2010年Euro NCAP发布行人测试协议(版本5.2)的修订版时,才针对这些系统提供了合适的测试程序。在此测试协议中,描述了一种评估方法,用于评估使用所谓的“最难检测到的撞击器”进行行人检测的基于接触的传感器系统。在与行人发生碰撞的情况下,这些撞击器应能再现在车辆前部产生的最低的撞击负荷,这在很大程度上取决于行人的人体测量学以及撞击情况。本文对行人车辆碰撞的事故运动学以及在车辆前部引起的负荷进行了整体分析。车辆前部使用通用的汽车降压器建模,该降压器是专门为此分析而设计的。从进行的仿真可以看出,导致最小可能冲击负荷的行人尺寸随不同的车辆类别而变化。因此,仅考虑一个行人大小是不够的。这些车辆行人仿真与由三个最难检测到的撞击器所引起的负载的比较表明,三个撞击器中没有一个能够为所有分析的四个车辆类别重现“最坏情况”。这项研究的结果由德国联邦公路研究所(BASt)代表并进行了资助,可用于开发针对被动车辆安全性的主动系统的合适,有效和客观的测试程序行人保护。

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