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Pulse shape analysis and data reduction of real-life frontal crashes with modern passenger cars

机译:脉冲形状分析和现代乘用车实际正面碰撞的数据减少

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The increased use of computer simulations such as finite element modelling for evaluating passive safety applications has made it possible to simplify and parameterise complex physical processes. Crash pulses derived from laboratory tests have been used in many studies to evaluate and optimise passive safety systems such as airbags and seat belts. However, a laboratory crash pulse will only be representative of the acceleration time history of a specific car crashing into a barrier at a specified velocity. To be able to optimise passive safety systems for the wide variety of scenarios experienced during real-life crashes, there is a need to study and characterise this variation. In this study, crash pulses from real-life crashes as recorded by event data recorders were parameterised, and the influence of vehicle and crash variables was analysed. The pulse parameterisation was carried out using eigenvalue analysis and the influence that vehicle and crash variables had on the pulse shape was determined with multiple linear regression. It was shown that the change in velocity, the subject vehicle mass, and the properties of the collision partner were the variables that had the greatest effect on the shape of the crash pulse. The results of this study can be used to create artificial real-life pulses with different crash parameters. This in turn can be used for stochastic computer simulation studies with the intention of optimising passive safety systems that are robust to the wide variation in real-life crashes.
机译:越来越多地使用计算机仿真(例如,有限元建模)来评估被动安全应用程序,使得简化和参数化复杂的物理过程成为可能。由实验室测试得出的碰撞脉冲已在许多研究中用于评估和优化被动安全系统,例如安全气囊和安全带。但是,实验室碰撞脉冲将仅代表特定汽车以指定速度碰撞进入障碍物的加速时间历史。为了能够针对现实碰撞中遇到的各种情况优化被动安全系统,需要研究和表征这种变化。在这项研究中,参数化了事件数据记录器记录的真实碰撞中的碰撞脉冲,并对车辆和碰撞变量的影响进行了分析。使用特征值分析进行脉冲参数化,并通过多元线性回归确定车辆和碰撞变量对脉冲形状的影响。结果表明,速度变化,目标车辆质量和碰撞伙伴的特性是对碰撞脉冲的形状影响最大的变量。这项研究的结果可用于创建具有不同碰撞参数的人工真实生活脉冲。这反过来又可以用于随机计算机模拟研究,以优化对现实生活中的各种事故具有鲁棒性的被动安全系统。

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