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Dynamic Friction Models for Road/Tire Longitudinal Interaction

机译:道路/轮胎纵向相互作用的动态摩擦模型

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In this paper we derive a new dynamic friction force model for the longitudinal road/tire interaction for wheeled ground vehicles. The model is based on a dynamic friction model developed previously for contact-point friction problems, called the LuGre model. By assuming a contact patch between the tire and the ground we develop a partial differential equation for the distribution of the friction force along the patch. An ordinary differential equation (the lumped model) for the friction force is developed, based on the patch boundary conditions and the normal force distribution along the contact patch. This lumped model is derived to approximate closely the distributed friction model. Contrary to common static friction/slip maps, it is shown that this new dynamic friction model is able to capture accurately the transient behaviour of the friction force observed during transitions between braking and acceleration. A velocity-dependent, steady-state expression of the friction force versus the slip coefficient is also developed that allows easy tuning of the model parameters by comparison with steady-state experimental data. Experimental results validate the accuracy of the new tire friction model in predicting the friction force during transient vehicle motion. It is expected that this new model will be very helpful for tire friction modeling as well as for anti-lock braking (ABS) and traction control design.
机译:在本文中,我们为轮式地面车辆的纵向道路/轮胎相互作用导出了一个新的动态摩擦力模型。该模型基于先前为接触点摩擦问题开发的动态摩擦模型,称为LuGre模型。通过假设轮胎和地面之间的接触面,我们建立了一个偏微分方程,用于沿面的摩擦力分布。基于斑块边界条件和沿接触斑块的法向力分布,开发了摩擦力的常微分方程(集总模型)。导出该集总模型以近似地近似分布式摩擦模型。与常见的静摩擦/滑移图相反,该新的动态摩擦模型能够准确地捕获在制动和加速之间的过渡过程中观察到的摩擦力的瞬态行为。还开发了摩擦力与滑移系数的速度相关的稳态表达式,通过与稳态实验数据进行比较,可以轻松调整模型参数。实验结果验证了新轮胎摩擦模型在预测瞬态车辆运动过程中的摩擦力时的准确性。预计该新模型将对轮胎摩擦建模以及防抱死制动(ABS)和牵引力控制设计非常有用。

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