首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Coordinative traction control of vehicles based on identification of the tyre-road friction coefficient
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Coordinative traction control of vehicles based on identification of the tyre-road friction coefficient

机译:基于轮胎-道路摩擦系数识别的车辆协调牵引力控制

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摘要

Traction control, which can be performed by different types of chassis control system, plays an important role in vehicle motion control. Since the propulsive force is actually produced by the friction between the tyre and road, information on the tyre-road friction is crucial for traction control. In this paper, a robust and effective tyre-road friction coefficient identification algorithm for straight acceleration is proposed, and a coordinative traction control method is designed by integrated usage of gear shifting control, engine control and braking control. For different driving conditions, the tyre forces were observed by a sliding-mode observer or calculated from the states of the vehicle directly, and the tyre-road friction coefficients were estimated by the recursive least-squares method or calculated from the linear characteristics between the friction coefficient and the slip ratio consequently. Based on the estimated tyre-road information, a practical and systematic coordinative traction control algorithm was designed to integrate shifting control, engine torque control and braking pressure control. Finally, the proposed methods are verified by both simulations and road tests. The results show that the estimation algorithms can identify the variation in the road conditions with considerable accuracy and response speed, and the controller successfully adjusted the slip ratios of the driving wheels in the stable region with good performances on different types of road.
机译:可以通过不同类型的底盘控制系统执行的牵引力控制在车辆运动控制中起着重要的作用。由于推进力实际上是由轮胎和路面之间的摩擦产生的,因此有关轮胎-路面摩擦的信息对于牵引力控制至关重要。提出了一种鲁棒有效的直线加速度轮胎摩擦系数识别算法,并结合变速控制,发动机控制和制动控制设计了协调牵引力控制方法。对于不同的驾驶条件,轮胎力由滑模观察器观察或直接从车辆状态计算,轮胎摩擦系数通过递归最小二乘法估算或根据轮胎之间的线性特性计算。因此,摩擦系数和滑移率。基于估算的轮胎信息,设计了一种实用,系统的协调牵引控制算法,将变速控制,发动机扭矩控制和制动压力控制集成在一起。最后,通过仿真和路测对所提方法进行了验证。结果表明,该估计算法能够以较高的精度和响应速度识别道路状况的变化,并且控制器成功地调整了稳定区域中驱动轮的滑移率,并且在不同类型的道路上均具有良好的性能。

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