转身(生物化学)
同步电动机
磁铁
永磁同步发电机
相(物质)
计算机科学
有刷直流电动机
控制理论(社会学)
永磁同步电动机
电气工程
交流电动机
电动机
工程类
物理
人工智能
核磁共振
控制(管理)
量子力学
作者
Harold Saavedra,Jordi‐Roger Riba,L. Romeral
标识
DOI:10.4316/aece.2014.04008
摘要
Five-phase permanent magnet synchronous motors (PMSMs) have inherent fault-tolerant capabilities.This paper analyzes the detection of inter-turn short circuit faults in five-phase PMSMs in their early stage, i.e. with only one turn in short circuit by means of the analysis of the stator currents and the zero-sequence voltage component (ZSVC) spectra.For this purpose, a parametric model of five-phase PMSMs which accounts for the effects of inter-turn short circuits is developed to determine the most suitable harmonic frequencies to be analyzed to detect such faults.The amplitudes of these fault harmonic are analyzed in detail by means of finite-elements method (FEM) simulations, which corroborate the predictions of the parametric model.A low-speed five-phase PMSM for inwheel applications is studied and modeled.This paper shows that the ZSVC-based method provides better sensitivity to diagnose inter-turn faults in the analyzed low-speed application.Results presented under a wide speed range and different load levels show that it is feasible to diagnose such faults in their early stage, thus allowing applying a post-fault strategy to minimize their effects while ensuring a safe operation.
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