基于Simulink的四分之一自由度汽车悬架系统仿真研究

L. Bereteu, A. Perescu
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引用次数: 1

摘要

利用Simulink®对四分之一汽车悬架系统进行仿真。只考虑汽车的垂直运动,忽略横摇和俯仰。所有汽车轴的运动都被建模为具有相等的振幅。基于FBD(自由体图)的汽车悬架动力学系统特性方程。我们分六个步骤建立仿真模型。在模拟中,我们考虑阻尼系数c为变量。其余参数是恒定的(质量、速度和刚度)。仿真参数在Mathlab®中定义。我们跟踪示波器上产生的最终信号。在研究的最后,我们总结了阻尼系数的变化对舒适性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quarter Car Suspension System With One Degree Of Freedom Simulated Using Simulink
Abstract Simulate the behavior of a quarter car suspension system with Simulink®. Consider only vertical movement of the car, neglecting roll and pitch. All movements of the car axes are modeled as having equal amplitude. The characteristic equations that describe the behavior of dynamical systems based on FBD (Free Body Diagram) of automotive suspension. We make the simulation model in six steps. In simulation we consider the damping coefficient, c, variable. The rest of parameters are constant (mass, speed and stiffness). The simulation parametrs are defined in Mathlab®. We follow the final signal created on the oscilloscope. At the end of the study, we concluded the effect of damping coefficient changes over the comfort.
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