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VEHICLE VELOCITY RELATION TO SLIPPING TRAJECTORY CHANGE: AN OPTION FOR TRAFFIC ACCIDENT RECONSTRUCTION

机译:车辆速度与打滑轨迹变化的关系:交通事故重建的一种选择

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摘要

In this paper, the relation of the velocity of a vehicle in the slip mode to the parameters of the tire marks on the road surface is examined. During traffic accident reconstructions, the initial velocity of a sideslipping vehicle is established according to the tire mark trajectory radius, and calculations highly depend on the directly measured parameters of the tire marks, in particular cases known as yaw marks. In this work, a developed and experimentally validated 14-degree-of-freedom mathematical model of a vehicle is used for an investigation of the relation between velocity and trajectories. The dependence of initial vehicle velocity on tire yaw mark length and trajectory radius was found as a characteristic relation. Hence, after approximation of the permanent slipping part by a polynomial, the parameters of the latter were related to vehicle velocity. The dependences were established by specific experimental tests and computer-aided simulation of the developed model.
机译:在本文中,研究了打滑模式下的车辆速度与路面上轮胎标记参数的关系。在交通事故重建期间,根据轮胎标记轨迹半径确定侧滑车辆的初始速度,并且计算高度依赖于轮胎标记的直接测量参数,在特定情况下称为偏航标记。在这项工作中,使用经过开发和实验验证的车辆14自由度数学模型来研究速度和轨迹之间的关系。发现初始车辆速度对轮胎偏航标记长度和轨迹半径的依赖性是特征关系。因此,在通过多项式逼近永久滑动部分之后,后者的参数与车速相关。通过特定的实验测试和开发模型的计算机辅助仿真来建立依赖性。

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