首页> 外文会议>ASME Biennial Conference on Engineering Systems Design and Analysis >CONSTRUCTION OF A RATIONAL TIRE MODEL FOR HIGH FIDELITY VEHICLE DYNAMICS SIMULATION UNDER EXTREME DRIVING AND ENVIRONMENTAL CONDITIONS
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CONSTRUCTION OF A RATIONAL TIRE MODEL FOR HIGH FIDELITY VEHICLE DYNAMICS SIMULATION UNDER EXTREME DRIVING AND ENVIRONMENTAL CONDITIONS

机译:极端驾驶和环境条件下高保真车辆动力学模拟的理性轮胎模型的构建

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摘要

In this paper, a control oriented rational tire model is developed and incorporated in a two-track vehicle dynamics model for the prospective design of vehicle dynamics controllers. The tire model proposed in this paper is an enhancement over previous rational models which have taken into account only the peaking and saturation behavior disregarding all other force generation characteristics. Simulation results have been conducted to compare the dynamics of a vehicle model equipped with a Magic Formula tire model, a rational tire model available in the literature and the present rational tire model. It has been observed that the proposed tire model results in vehicle responses that closely follow those obtained with the Magic Formula even for extreme driving scenarios conducted on roads with low adhesion coefficient.
机译:在本文中,开发了一种控制取向的理性轮胎模型,并结合在用于车辆动力学控制器的前瞻性设计的双轨车辆动力学模型中。本文提出的轮胎模型是对以前的合理模型的增强,该模型仅考虑了忽视所有其他力产生特征的峰值和饱和行为。已经进行了仿真结果,以比较配备有魔法配方轮胎模型的车型的动态,是文献中可用的理性轮胎模型和目前的理性轮胎模型。已经观察到所提出的轮胎模型导致车辆响应,即甚至在具有低粘附系数的道路上进行的极端驾驶场景,即使在道路上进行的极端驾驶场景也是如此。

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