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Assessment Methodologies for Forward Looking Integrated Pedestrian Systems and Further Extension to Cyclist Safety: Experimental and Virtual Testing for Pedestrian Protection

机译:用于前瞻性行人系统的评估方法以及骑自行车者安全的进一步延伸:行人保护的实验和虚拟测试

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Pedestrians and cyclists are the most unprotected road users and their injury risk in case of accidents is significantly higher than for other road users. The understanding of the influence and sensitivity between important variables describing a pedestrian crash is key for the development of more efficient and reliable safety systems. This paper reflects the related work carried out within the AsPeCSS project. The results summarized out of virtual and physical tests provide valuable information for further development.1168 virtual and 120 physical tests were carried out with adult and child pedestrian headform as well as upper and lower legform impactors representatives of 4 different vehicle front geometries in a wide range of impact speeds, angles and locations. This test matrix was based on previous work carried out within the AsPeCSS project. The results obtained show several trends and influences of input variables (impact speed, angle, location, impactor masses, impactor type) on the particular outcomes. In general, impact speed was the most influential parameter. The increase of impact speed resulted in higher HIC, bending moment or force presumably generating a higher injury risk. The work carried out provided the results to enable further development of Injury Risk Curves regarding VRU protection for different body regions. This work provides insight into the variation of injury criteria when also considering different speed and angles which is especially useful for the evaluation of active safety systems (e.g. AEB).
机译:行人和骑自行车的人是最无保护的道路用户及其伤害风险,在意外情况下明显高于其他道路使用者。了解描述行人崩溃的重要变量之间的影响和敏感性是开发更有效和更可靠的安全系统的关键。本文反映了Aspecss项目中的相关工作。的虚拟和物理测试总结出来的结果提供了进一步development.1168有价值的信息虚拟和物理120次试验是用成人和儿童行人头模进行以及上和在宽范围内降低的4件不同的车辆前部的几何形状腿型撞击代表冲击速度,角度和位置。该测试矩阵基于Aspecss项目中的先前工作。得到的结果显示了输入变量(冲击速度,角度,位置,撞击群,撞击型)对特定结果的几个趋势和影响。通常,冲击速度是最有影响力的参数。冲击速度的增加导致较高的HY,弯矩或力量可能产生更高的伤害风险。开展的工作提供了结果,以便进一步发展有关不同体积的VRU保护的伤害风险曲线。这项工作提供了洞察损伤标准的变化,当考虑到不同的速度和角度,这对激活安全系统(例如AEB)特别有用。

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