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ANTI-LOCK WHEEL SLIP CONTROL WITH AN ADAPTIVE SEARCHING ALGORITHM FOR THE OPTIMAL SLIP

机译:带有自适应搜索算法的最优轮滑防抱死轮滑控制

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摘要

An adaptive searching algorithm for the optimal slip during ABS wheel slip control is proposed. By taking advantage of the fluctuation of wheel slip control, the direction towards the optimal slip can be found, and the target slip calculated by the algorithm asymptotically converged to the optimal slip, which is proved using the Lyapunov theory. A gain-scheduling wheel slip controller is developed to control the wheel slip to the target slip. Simulations on the uniform road and on the road with changed friction are carried out to verify the effectiveness of the proposed algorithm. Simulation results show that the ABS algorithm using the proposed searching algorithm can make full use of the road friction and adapts to road friction changes. Comparing with the conventional rule-based ABS, the pressure modulation amplitude and wheel speed fluctuation is significantly reduced, improving control performance of ABS.
机译:提出了一种ABS车轮打滑控制中最优打滑的自适应搜索算法。通过利用车轮打滑控制的波动,可以找到朝向最佳打滑的方向,并且通过算法渐进地收敛到最佳打滑,该算法使用李雅普诺夫理论证明了这一点。开发了一种增益调度的车轮滑移控制器,以将车轮滑移控制到目标滑移。在均匀道路和摩擦变化的道路上进行了仿真,以验证该算法的有效性。仿真结果表明,提出的搜索算法的ABS算法可以充分利用道路摩擦力,适应道路摩擦力的变化。与传统的基于规则的ABS相比,压力调制幅度和轮速波动显着降低,从而改善了ABS的控制性能。

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