首页> 外文会议>International Technical Conference on the Enhanced Safety of Vehicles >MATHEMATICAL MODELING and NUMERICAL OPTIMIZATION of THREE VEHICLE CRASHES using a SINGLE-MASS LUMPED PARAMETER MODEL
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MATHEMATICAL MODELING and NUMERICAL OPTIMIZATION of THREE VEHICLE CRASHES using a SINGLE-MASS LUMPED PARAMETER MODEL

机译:三辆车崩盘的数学建模与数值优化使用单质量集体参数模型

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In this paper mathematical modelling of a vehicle crash based on a lumped parameter model is studied. The vehicle is modelled as a single mass connected to a non-linear spring and damper system. The characteristics of the non-linear behaviour of the model is identified with a hybrid Firefly/Harmony Search optimization algorithm that minimizes the deviation between experimental test data and a simulated response. The experimental data is taken from three crashes of an identical vehicle that crashes into a wall at different initial velocities. The aim of this paper is to find a piecewise-linear function for the spring and damper coefficients which is scaleable to reconstruct the three different experimental crashes at different impact velocities. Numerical results are provided to illustrate the applicability of the proposed algorithm. Three data sets will be used for parameter identification and a fourth data set will be used for verification.
机译:在本文中,研究了基于集总参数模型的车辆崩溃的数学建模。车辆被建模为连接到非线性弹簧和阻尼系统的单个质量。用混合萤火虫/和谐搜索优化算法识别模型的非线性行为的特征,其最小化实验测试数据与模拟响应之间的偏差。实验数据从三个相同的车辆的三次碰撞中取出,该车辆在不同的初始速度下撞入墙壁中。本文的目的是找到弹簧和阻尼系数的分段线性函数,其可扩展,以重建不同冲击速度的三种不同的实验碰撞。提供了数值结果,以说明所提出的算法的适用性。三个数据集将用于参数标识,第四个数据集将用于验证。

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