首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >Optimum design for passive suspension system of a vehicle to prevent rollover and improve ride comfort under random road excitations
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Optimum design for passive suspension system of a vehicle to prevent rollover and improve ride comfort under random road excitations

机译:车辆被动悬架系统的最佳设计,可防止在随机道路激励下发生侧翻并提高乘坐舒适性

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摘要

The main functions of suspension system are to provide ride comfort for the passengers and vehicle handling (road holding). But, in many studies, full attention to the ride comfort leads to the determination of incorrect suspension system parameters as well as other problems such as rollover and reducing road-holding ability in the vehicle. The aim of this study is to present a method for the optimized design of the vehicle suspension system in order to improve the ride comfort, road holding, workspace and preventing rollover, considering a full vehicle model with 11-DOF. The most important feature of this study is that the prevention of rollover factor and all of suspension functions are considered simultaneously. In this research, in order to assess the ride comfort, the vertical acceleration values of seats that are caused by random road roughness are calculated by power spectral density of road in frequency domain. In the context of prevention of rollover, Fishhook manoeuvre is performed using a mathematical model for the roll motion, and then the dynamic behaviour of the variables is considered in rollover threshold. Then, the optimization problem is solved to minimize the vertical acceleration values and vehicle roll angle by considering the physical limitation and safety of the model. The results of the optimization show that the vertical acceleration, in frequency domain at the desired boundary values (as defined in ISO 2631), decreases and rollover resistance of the vehicle increases.
机译:悬架系统的主要功能是为乘客提供乘车舒适感和车辆操纵(抓地力)。但是,在许多研究中,全神贯注于乘坐舒适性导致确定了错误的悬架系统参数以及其他问题,例如侧翻和降低车辆的抓地力。这项研究的目的是提出一种用于车辆悬架系统的优化设计的方法,以考虑到具有11自由度的完整车辆模型,从而提高乘坐舒适性,道路保持,工作空间并防止侧翻。这项研究的最重要特征是同时考虑了防止翻滚系数和所有悬架功能。在这项研究中,为了评估乘坐舒适性,通过频域中道路的功率谱密度来计算由随机道路不平整引起的座椅垂直加速度值。在防止侧翻的情况下,使用用于侧倾运动的数学模型执行Fishhook机动,然后在侧翻阈值中考虑变量的动态行为。然后,通过考虑模型的物理限制和安全性,解决了优化问题以最小化垂直加速度值和车辆侧倾角。优化结果表明,在频域中,在所需边界值(如ISO 2631所定义)中的垂直加速度减小,并且车辆的侧倾阻力增大。

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