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A fault-tolerant control strategy for switched reluctance motor drive for electric vehicles under short-fault condition

机译:短路故障下电动汽车开关磁阻电机驱动的容错控制策略

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This paper proposed a new fault-tolerant control strategy for the short-fault occurring in the switched reluctance motor (SRM) electric drive system, which can not only suppress severe torque ripples in short faults, but also can adjust the total torque and torque ripples in different working conditions to ensure the reliability of the SRM system and the safety of drivers. The proposed strategy is to select the derating states according to the operation requirements when switches short faults occur, then shorten the conduction angle of the faulty phase and adjust the duty cycle of all switches of three phases according to the proposed fault-tolerance rule. Furthermore, the fault-tolerant strategy was applied to a three-phase 12/8 SRM drive. Simulation results in MATLAB/Simulink and experiments on the RT-LAB validate the effectiveness of the proposed strategy, which may be significant in reliability of electric vehicles.
机译:针对开关磁阻电机(SRM)电力驱动系统中的短路故障,提出了一种新的容错控制策略,该策略不仅可以抑制短路故障中的严重转矩脉动,而且可以调节总转矩和转矩脉动在不同的工作条件下,以确保SRM系统的可靠性和驾驶员的安全。提出的策略是根据发生开关短路故障时的运行要求选择降额状态,然后根据提出的容错规则,缩短故障相的导通角,调整三相所有开关的占空比。此外,将容错策略应用于三相12/8 SRM驱动器。 MATLAB / Simulink中的仿真结果以及RT-LAB上的实验验证了所提出策略的有效性,这可能对电动汽车的可靠性至关重要。

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