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Simplified Minimum Copper Loss Remedial Control of a Five-Phase Fault-Tolerant Permanent-Magnet Vernier Machine under Short-Circuit Fault

机译:短路故障下五相容错永磁游标机的简化最小铜损补救控制

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A fault-tolerant permanent-magnet vernier (FT-PMV) machine incorporates the merits of high fault-tolerant capability and high torque density. In this paper, a new remedial control is proposed for a five-phase FT-PMV machine with short-circuit fault of stator windings. Based on the principle of copper loss minimization, the aims of the proposed control strategy are to keep magnetic motive force (MMF) unchanged and minimize torque ripple. The proposed remedial control strategy contains two parts. Firstly, the remedial currents of the healthy phases are used to compensate for the ripple of MMF caused by the short-circuit current. Secondly, an open-circuit fault-tolerant control strategy is used to compensate for the lack of normal torque in the fault phase. Finally, the vector sum of two parts is adopted to derive the remedial currents. The final expression of the proposed remedial current is simpler than that than these previous methods. In addition, the proposed remedial currents are sinusoidal, which can reduce the reactive component in instantaneous power produced by pulsating torque and iron loss of a sine back-EMF machine. A FT-PMV prototype is built. The simulations and the experiments verify the effectiveness of the proposed strategy.
机译:容错永磁游标(FT-PMV)机器具有高容错能力和高扭矩密度的优点。本文针对定子绕组短路故障的五相FT-PMV电机提出了一种新的补救控制方法。基于最小化铜损的原理,所提出的控制策略的目的是保持磁动力(MMF)不变并最小化转矩波动。拟议的补救控制策略包括两个部分。首先,健康阶段的补救电流用于补偿由短路电流引起的MMF纹波。其次,采用开路容错控制策略来补偿故障阶段正常转矩的缺乏。最后,采用两部分的矢量和求出修正电流。提议的补救措施的最终表达比这些先前的方法更简单。此外,建议的补救电流为正弦波,可减少由正弦反电动势电机的脉动转矩和铁损产生的瞬时功率中的无功分量。建立了FT-PMV原型。仿真和实验验证了所提策略的有效性。

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