A new motors fault tolerance control strategy to 4WID electric vehicle

H. Qiu, Z. Qi
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引用次数: 2

Abstract

Four wheels independent driving (4WID) electric vehicle uses four motors. if some motors get faults, the whole vehicle would loss the stability to cause casualties. To solve the problem mentioned above, the fault tolerance control strategy of two motors of the 4WID electric vehicle running in straight line was studied and solved in this paper. The two-motor-fault modes were listed in all its aspects and the mathematic models of seven degrees of freedom were established. To achieve a good driving stability and dynamic characteristic with motors in failure state, the motors fault tolerance control strategies were proposed based on the performance of the 4WID electric vehicle and simulated by MATLAB/Simulink. The results show that the control strategies for torque re-allocation with motors in failure states can meet the designed demands, which provides a basis for the designing of whole vehicle's control strategy of the 4WID electric vehicle.
一种新的四驱电动汽车电机容错控制策略
四轮独立驱动(4WID)电动汽车使用四个电机。如果部分电机出现故障,整车将失去稳定性,造成人员伤亡。针对上述问题,本文研究并解决了四驱车直线行驶双电机容错控制策略。列举了双电机故障的各个方面,并建立了七自由度的数学模型。为了在电机处于故障状态时获得良好的行驶稳定性和动态特性,根据四wid电动汽车的性能,提出了电机容错控制策略,并利用MATLAB/Simulink进行了仿真。结果表明,电机故障状态转矩重分配控制策略能够满足设计要求,为4WID电动汽车整车控制策略设计提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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