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Open-Circuit Fault-Tolerant Control for a Five-Phase Permanent Magnet Synchronous Machine Drive

机译:五相永磁同步电机驱动器的开路容错控制

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In this paper, open-circuit fault-tolerant current control for a five-phase permanent magnet (PM) machine is proposed based on the theory of eliminating pulsating components in the resultant magneto-motive force (MMF) under faulty condition. According to the principle, new current sets are derived by adding an additional current component to each remaining healthy phase to maintain a smooth total torque by eliminating pulsating parts of the resultant MMF for the five different open-circuit faults. The remaining healthy phase currents are obtained for a single-phase, double-phase and three-phases open-circuit fault conditions. The proposed fault-tolerant control strategy is validated by finite-element analysis (FEA). This fault-tolerant control method can be applied to any multi-phase PM machines.
机译:本文基于消除故障条件下的合磁势(MMF)中脉动分量的理论,提出了一种五相永磁(PM)电机的开路容错电流控制。根据该原理,通过为五个不同的开路故障消除产生的MMF的脉动部分,向每个剩余的健康阶段添加一个额外的电流分量以保持平滑的总转矩,从而得出新的电流组。对于单相,双相和三相开路故障情况,可获得剩余的健康相电流。通过有限元分析(FEA)验证了所提出的容错控制策略。这种容错控制方法可以应用于任何多相永磁电机。

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