Effect of Stator Fault Currents on Rotor Permanent Magnets for a SPM-type BLDC Motor

A. Usman, B. Rajpurohit
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Abstract

In this study, the effect of stator fault currents on the rotor Permanent Magnets (PMs) of the Surface Mounted PM (SPM)-type Brushless Direct Current (BLDC) motor is investigated. The steady state analysis of the machine is performed under the Stator Inter-turn Faults (SITF) conditions which give rise to stator phase currents. The consequent effect of high rise in stator currents has an adverse effect on the surface mounted rotor PMs of grade N35SH having a non-linearity characteristic depending upon the operating temperatures. The change in temperature (∆T) is function of stator phase currents which alters (δ Is) and increases drastically under SITF conditions. Consequently, the rotor PMs demagnetizes, and the Partial Demagnetization (PD) condition commences. The Finite Element modeling of possible demagnetization fault cases under different current intensity (to imitate SITF) are studied. The adverse effect on the motor back-EMF (EB) and magnetic flux (BM) signatures are investigated which are used as fault indicators. The proposed study has the ability to determine the partial demagnetization state at its incipient stage post the SITF conditions.
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spm型无刷直流电机定子故障电流对转子永磁体的影响
研究了定子故障电流对表面贴装永磁(SPM)型无刷直流(BLDC)电机转子永磁体(PM)的影响。在产生定子相电流的定子匝间故障(SITF)条件下,对电机进行稳态分析。因此,定子电流的高上升对表面安装的N35SH级转子永磁产生不利影响,其非线性特性取决于工作温度。温度变化(∆T)是定子相电流的函数,在SITF条件下,定子相电流变化(δ is)并急剧增加。因此,转子永磁电机退磁,部分退磁(PD)条件开始。研究了在不同电流强度下可能出现的退磁故障的有限元模型(模拟SITF)。研究了电动机反电动势(EB)和磁通(BM)特征对故障指示的影响。提出的研究有能力确定部分退磁状态在其初期阶段后的SITF条件。
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