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AN INVESTIGATION ON VEHICLE ACTIVE SUSPENSION AND ANTI-LOCK BRAKING SYSTEM COORDINATION CONTROL

机译:车辆主动悬架与防抱死制动系统协调控制的研究

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This paper made an investigation on the coordinated control scheme of vehicle anti-lock braking system (ABS) and vehicle active suspension. The objective of this investigation is to obtain the maximum braking force on the road and to minimize the stopping distance and meanwhile maintain vehicle directional stability and maintain ride comfort. The controller was designed by using the fuzzy model control theory and was implemented under the Matlab/Simulink software environment. A 7-DOF-vehicle model was used to consider the influences of the non-linearity of tire and suspension. The simulation tests were carried out in various conditions. The action of the ABS combined with active suspension and the effects of applied suspension force on braking performances were examined. The simulation results show that for a particular vehicle there exists an optimal application of the suspension force. Compared with an ABS system without combing active suspension, the proposed control scheme can improve braking performance significantly.
机译:本文研究了车辆防抱死制动系统(ABS)和车辆主动悬架的协调控制方案。该研究的目的是在道路上获得最大制动力,并最小化制动距离,同时保持车辆的方向稳定性和行驶舒适性。该控制器采用模糊模型控制理论进行设计,并在Matlab / Simulink软件环境下实现。使用7自由度车辆模型来考虑轮胎和悬架非线性的影响。模拟测试是在各种条件下进行的。研究了ABS与主动悬架相结合的作用以及施加的悬架力对制动性能的影响。仿真结果表明,对于特定的车辆,存在最佳的悬架力作用。与没有梳理主动悬架的ABS系统相比,所提出的控制方案可以显着提高制动性能。

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