首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Hydraulic anti-lock braking control strategy of a vehicle based on a modified optimal sliding mode control method
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Hydraulic anti-lock braking control strategy of a vehicle based on a modified optimal sliding mode control method

机译:基于改进的最佳滑动模式控制方法的车辆液压防闸制动控制策略

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摘要

The objective of this paper is to propose a modified optimal sliding mode control method for the hydraulic anti-lock braking system of a vehicle to achieve both robustness and optimal control performance. The longitudinal dynamic model of a vehicle, tyre model and hydraulic anti-lock braking system model are established, and the weakness of the common optimal sliding mode control method in designing the anti-lock braking system controller is analysed synthetically. The analyses form the basis for tracking an ideal slip ratio. A new modified optimal sliding mode controller is proposed to regulate the hydraulic anti-lock braking system for a better braking performance and robustness: the optimal sliding mode manifold function includes several virtual damping elements and infinitely small-sized items to meet the working conditions of the current optimal sliding mode control method. The control results of the proposed controller are compared with those of the common sliding mode controller. Simulation results under various road conditions demonstrate that the modified optimal sliding mode controller not only has strong robustness against uncertainties in the road adhesion coefficient but also achieves better control performance of the slip ratio.
机译:本文的目的是为车辆的液压防锁制动系统提出改进的最佳滑模控制方法,以实现鲁棒性和最佳控制性能。建立了车辆,轮胎模型和液压防抱死制动系统模型的纵向动态模型,综合地分析了设计防抱死系统控制器的常见最佳滑动模式控制方法的弱点。分析形成跟踪理想滑移比的基础。提出了一种新的改进的最佳滑动模式控制器,用于调节液压防锁制动系统,以获得更好的制动性能和鲁棒性:最佳滑动模式歧管功能包括若干虚拟阻尼元件,并且无限小型物品,以满足工作条件电流最优滑动模式控制方法。将所提出的控制器的控制结果与公共滑模控制器的控制结果进行比较。在各种道路条件下的仿真结果表明,改进的最佳滑动模式控制器不仅具有强大的防止道路粘附系数的不确定性的鲁棒性,而且还实现了更好的防滑比控制性能。

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