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Analysis of Fault Tolerant Control for a Nine-Phase Flux-Switching Permanent Magnet Machine

机译:九相磁控开关永磁电机的容错控制分析

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摘要

The fault tolerant capability of electrical machine-based driving systems is extremely important in many applications. Hence, in this paper, two fault tolerant current control strategies for a nine-phase flux-switching permanent magnet (FSPM) machine are proposed and implemented when one or two phases meet the open-circuit fault. The basic concepts of the two control strategies are to keep the rotating magnetomotive force unchanged under both healthy and faulty conditions. Based on the principle, an optimal solution is derived through comparing the magnitudes of fault tolerant currents, average output torque, and torque ripple. The finite element analysis-based predictions of the nine-phase FSPM machine verify the effectiveness and difference of the two fault tolerant control strategies.
机译:在许多应用中,基于电机的驱动系统的容错能力非常重要。因此,在本文中,针对一相或两相遇到开路故障,提出并实施了九相磁通量开关永磁(FSPM)电机的两种容错电流控制策略。两种控制策略的基本概念是在健康状况和故障状况下均保持旋转磁通势不变。根据该原理,可以通过比较容错电流,平均输出转矩和转矩波动的幅度来得出最佳解决方案。九相FSPM机器的基于有限元分析的预测证明了这两种容错控制策略的有效性和差异。

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