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Detection and Localization of Stator Resistance Dissymmetry Based on Multiple Reference Frame Controllers in Multiphase Induction Motor Drives

机译:基于多参考系控制器的多相感应电动机驱动器定子电阻不对称检测与定位

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摘要

Multiphase drives are receiving increasing attention by the research community in high-power applications. In this paper, the behavior of multiphase induction machines with an odd number of phases is investigated under the assumption that the resistances of the stator winding are unbalanced owing to poor connections. A high-resistance connection can cause overheating and supply voltage unbalance, which may reduce the efficiency and increase the fire hazard. The main contribution of this paper is a control scheme that can detect the stator resistance unbalance, that can localize the faulty phase, and, at the same time, that can keep the drive behavior unchanged, both in transient and steady-state operating conditions. The control scheme is based on an analytical model that shows the effect of the unbalance on the current components related to the high-order spatial harmonics of the air-gap magnetic field. The theoretical analysis and the feasibility of the control scheme are confirmed by experimental tests.
机译:在高功率应用中,多相驱动器越来越受到研究界的关注。在本文中,在假设定子绕组的电阻由于连接不良而失衡的情况下,研究了具有奇数相的多相感应电机的性能。高电阻连接可能会导致过热和电源电压不平衡,从而降低效率并增加火灾隐患。本文的主要贡献是一种控制方案,该方案可以检测定子电阻不平衡,可以定位故障相,同时可以在瞬态和稳态运行条件下保持驱动性能不变。该控制方案基于一个分析模型,该模型显示了不平衡对与气隙磁场的高阶空间谐波有关的电流分量的影响。实验验证了该控制方案的理论分析和可行性。

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