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A state-space approach to mathematical modeling and parameters identification of vehicle frontal crash

机译:一种状态空间方法进行车辆正面碰撞数学建模和参数识别

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In this paper a state-space estimation procedure that relies on the time-domain analysis of input and output signals is used for mathematical modeling of vehicle frontal crash. The model is a double-spring–mass–damper system, whereby the front mass and real mass represent the chassis and the passenger compartment, respectively. It is observed that the dynamic crash of the model is closer to the dynamic crash from experimental when the mass of the chassis is greater than the mass of the passenger compartment. The dynamic crash depends on pole placement and the estimated parameters. It is noted that when the poles of the model are closer to zero, the dynamic crash of the model is far from the dynamic crash from the experimental data. The stiffness and damping coefficients play an important role in the dynamic crash.
机译:在本文中,基于输入和输出信号的时域分析的状态空间估计程序用于车辆正面碰撞的数学建模。该模型是双弹簧-质量-阻尼器系统,其中前部质量和实际质量分别代表底盘和乘客车厢。可以看到,当底盘的质量大于乘客厢的质量时,模型的动态碰撞更接近于实验的动态碰撞。动态碰撞取决于极点位置和估计的参数。注意,当模型的极点接近于零时,模型的动态崩溃与实验数据的动态崩溃相差甚远。刚度和阻尼系数在动态碰撞中起重要作用。

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