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A Novel Control Method of Wheel Slip Phenomena in Electric Vehicles Based on the Number of Equilibrium Points

机译:基于均衡点数量的电动车辆车轮滑动现象的一种新型控制方法

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The quick and precise torque response of electric vehicles (EVs) will provide new advanced traction control systems (TCS). This paper presents an analytical result of the rapid variation of slip between wheel and road surface, and also proposes a novel TCS to suppress the phenomena. The analysis is carried out by means of focusing on the number and stability of equilibrium points. Then it is clarified the saddle-node bifurcation produces the phenomenon. In the discussion of the control method, it is proposed that a torque modifies the bifurcation structure to merge the multiple equilibrium points into one stable point to suppress the phenomenon. The effectiveness of the proposed method is illustrated by both a simulation and an experiment.
机译:电动车辆(EVS)的快速和精确的扭矩响应将提供新的高级牵引力控制系统(TCS)。本文介绍了车轮和路面之间的滑动快速变化的分析结果,并提出了一种抑制现象的新型TC。通过关注均衡点的数量和稳定性来进行分析。然后澄清鞍座节点分叉产生现象。在对照方法的讨论中,提出了扭矩改变分叉结构以将多个平衡点合并到一个稳定点中以抑制现象。所提出的方法的有效性由模拟和实验说明。

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