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A Unified Analysis of the Fault Tolerance Capability in Six-Phase Induction Motor Drives

机译:六相感应电动机驱动器容错能力的统一分析

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摘要

The fault tolerance of electric drives is highly appreciated at industry for security and economic reasons, and the inherent redundancy of six-phase machines provides the desired fault-tolerant capability with no extra hardware. For this reason some recent research efforts have been focused on the fault-tolerant design, modeling, and control of six-phase machines. Nevertheless, a unified and conclusive analysis of the postfault capability of six-phase machine is still missing. This paper provides a full picture of the postfault derating in generic six-phase machines and a specific analysis of the fault-tolerant capability of the three mainstream six-phase induction machines (asymmetrical, symmetrical, and dual three phase). Experimental results confirm the theoretical post fault current limits and allow concluding, which is the best six-phase machine for each fault scenario and neutral arrangement.
机译:出于安全性和经济方面的原因,电力驱动器的容错性在业界得到高度重视,六相电机的固有冗余性提供了所需的容错能力,而无需额外的硬件。因此,最近的一些研究工作集中在六相电机的容错设计,建模和控制上。但是,仍然缺少对六相电机的故障后能力的统一和结论性分析。本文提供了通用六相电机故障后降额的全貌,并详细分析了三款主流六相感应电机(不对称,对称和双三相)的容错能力。实验结果证实了理论上的故障后电流极限并可以得出结论,这是针对每种故障情况和中性点布置的最佳六相电机。

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