Finite Element Modeling of Stator Winding Faults in Permanent Magnet Synchronous Motor: Part II

A. Usman, Nikhil. T. Doiphode, B. Rajpurohit
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引用次数: 3

Abstract

Stator Winding Faults (SWFs) in Permanent Magnet Synchronous Motors (PMSMs) adversely affect the performance of the machine. The machine quantities in terms of stator phase currents, back-EMF, magnetic flux density and flux lines changes significantly. This paper shall investigate in detail the adverse affect on different electrical and magnetic quantities during the SWFs in PMSM. Earlier in Part I, the authors have modeled the machine using analytical approach to draw the inferences on the performance of PMSM during healthy and faulty conditions. This paper shall discuss in detail about the validation of those results with the outcomes obtained through Finite Element (FE) modeling of PMSM using Maxwell 2D tool. FE modeling of PMSM involves Numerical Method (NM) approach which though takes high computational time but deliver better accuracy. FE model of PMSM with an emulation of different SWFs viz. Stator Inter-turn Fault (SITF), coil-to-coil fault and phase-to-phase faults are developed. The performance of the machine is then compared under healthy and faulty conditions. The performance deductions are further analyzed and compared with the analytical outcomes thereby giving a validation of SWFs in PMSM. The significant outcomes like changes in phase currents, back-EMF and magnetic flux density, thus encountered are further used to define fault index for the detection and identification of SWFs in PMSM.
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永磁同步电动机定子绕组故障的有限元建模:第二部分
永磁同步电动机的定子绕组故障会对电机的性能产生不良影响。整机数量在定子相电流、反电动势、磁通密度和磁通线方面变化明显。本文将详细研究在永磁同步电机中,不同的电磁量对SWFs的不利影响。在第一部分的早些时候,作者使用分析方法对机器进行了建模,以得出在健康和故障条件下PMSM性能的推论。本文将详细讨论这些结果与使用Maxwell 2D工具对PMSM进行有限元(FE)建模所得结果的验证。永磁同步电机的有限元建模采用数值方法(Numerical Method, NM),计算时间长,但精度高。建立了永磁同步电机的有限元模型,仿真了定子匝间故障、线圈-线圈故障和相-相故障等不同的故障源。然后比较机器在健康和故障条件下的性能。进一步分析了性能扣除,并与分析结果进行了比较,从而验证了PMSM中主权财富基金的有效性。由此得到的相电流、反电动势和磁通密度变化等显著结果进一步用于定义故障指标,用于PMSM中swf的检测和识别。
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