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Development of a device to increase the protection of vulnerable road users in the case of impact against heavy vehicles

机译:开发一种装置,以在对重型车辆造成冲击的情况下增强对弱势道路使用者的保护

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The protection of vulnerable road users in urban traffic is nowadays a major issue in vehicle construction. Numerical techniques to perform virtual tests are of great help in dealing with these vehicle design problems.The objective of this research is the selection of an optimal configuration for a pedestrian protection system based on the adaptive surfaces in Heavy Vehicles (HV). These adaptive surfaces can be an add-on solution for the front grille and bumper, and are moved by means of actuators in pre-impact situations.A numerical multibody model has been developed with MADYMO code to simulate a 30 km/h truck-pedestrian impact. This model has been used to set-up a full factorial plan with three variables in order to reduce the possible biological damage to the pedestrian. The damage risk is evaluated by means of the Head Injury Criterion (HIC). The optimal solution with respect to the three variables has been determined by means of a regression model.
机译:如今,在城市交通中保护弱势道路使用者已成为汽车制造中的主要问题。进行虚拟测试的数值技术对解决这些车辆设计问题有很大帮助。 这项研究的目的是基于重型车辆(HV)的自适应表面选择行人保护系统的最佳配置。这些自适应表面可以作为前格栅和保险杠的附加解决方案,并在预碰撞情况下通过执行器移动。 已经开发了带有MADYMO代码的数字多体模型,以模拟30 km / h的卡车行人撞击。该模型已用于建立具有三个变量的完整析因计划,以减少可能对行人造成的生物损害。通过头部受伤标准(HIC)评估损坏风险。关于这三个变量的最佳解决方案已通过回归模型确定。

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