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A Strategy of Suppressing Torque Ripple in PMSM Drive System with Open-Phase Fault

机译:三相断相永磁同步电机驱动系统的转矩脉动抑制策略

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This paper proposes a method to suppress the torque ripple based on proportional integral quasi resonant (PIR) controller for the permanent magnet synchronous motor (PMSM) with three-phase four-switch (TPFS) topology. The TPFS topology, having a lower number of switches, was first presented for the possibility of reducing the inverter cost, and it became very attractive as it can be utilized in fault-tolerant control to solve the open-phase fault of the motor. However, using the TPFS topology leads the command voltages and currents to have second harmonics in the dq axis, which causes the second periodic ripple in the torque and speed. The method proposed in this paper enables to improve the disadvantages of using the TPFS topology, and to suppress the ripples of torque and speed of the motor. Simulation results clearly prove the effectiveness of the proposed method.
机译:针对三相四开关(TPFS)拓扑的永磁同步电动机(PMSM),提出了一种基于比例积分准谐振(PIR)控制器的转矩脉动抑制方法。 TPFS拓扑具有较低的开关数量,最初是为了降低逆变器成本而提出的,由于它可用于容错控制中以解决电动机的断相故障,因此它变得非常有吸引力。但是,使用TPFS拓扑会导致命令电压和电流在dq轴上具有二次谐波,这会导致转矩和速度产生二次周期性波动。本文提出的方法可以改善使用TPFS拓扑的缺点,并可以抑制电动机的转矩和速度波动。仿真结果清楚地证明了该方法的有效性。

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