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Control strategies for four in-wheel driven electric vehicles when motor drive systems fail

机译:电机驱动系统出现故障时四轮驱动电动汽车的控制策略

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This paper focuses on the design of control strategy in four-wheel independent drive (4WID) electric vehicles when motor drive systems fail. We proposed a control strategy to maintain the performance and stability for the 4WID electric vehicles with motor drive systems failure. Firstly, failure modes of motor drive systems are classified and analyzed as Failure-Driving mode and Failure-Stopping mode. Secondly, a twolayer-control-model (upper layer and lower layer) is presented to maintain the performance and stability of the vehicle by controlling the normal motor drive systems for Failure-Driving mode; In the upper layer, fuzzy logic direct yaw-moment control (DYC) is proposed. In the lower layer, a control algorithm is designed to distribute torque to motor drive systems without failure. The effectiveness of the control strategies have been examined using a driving simulator system.
机译:本文重点研究电动机驱动系统出现故障时的四轮独立驱动(4WID)电动汽车的控制策略。我们提出了一种控制策略,以维护具有电机驱动系统故障的4WID电动汽车的性能和稳定性。首先,将电动机驱动系统的故障模式分类为故障驱动模式和故障停止模式。其次,提出了一种双层控制模型(上层和下层),以通过控制故障驱动模式下的常规电动机驱动系统来保持车辆的性能和稳定性。在上层,提出了模糊逻辑直接偏航力矩控制(DYC)。在较低的层中,设计了一种控制算法,可将转矩分配到电动机驱动系统而不会发生故障。控制策略的有效性已使用驾驶模拟器系统进行了检查。

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