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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Static Eccentricity Fault Recognition in Three-Phase Line Start Permanent Magnet Synchronous Motor Using Finite Element Method
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Static Eccentricity Fault Recognition in Three-Phase Line Start Permanent Magnet Synchronous Motor Using Finite Element Method

机译:三相线路启动永磁同步电动机的静态偏心故障识别的有限元方法

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摘要

This paper is dedicated to investigating static eccentricity in a three-phase LSPMSM. The modeling of LSPMSM with static eccentricity between stator and rotor is developed using finite element method (FEM). The analytical expression for the permeance and flux components of nonuniform air-gap due to static eccentricity fault is discussed. Various indexes for static eccentricity detection using stator current signal of IM and permanent magnet synchronous motor (PMSM) are presented. Since LSPMSM is composed of a rotor which is a combination of these two motors, the ability of these features is evaluated for static eccentricity diagnosis in LSPMSM. The simulated stator current signal of LSPMSM in the presence of static eccentricity is analyzed in frequency domain using power spectral density (PSD). It is demonstrated that static eccentricity fault generates a series of low frequency harmonic components in the form of sidebands around the fundamental frequency. Moreover, the amplitudes of these components increase in proportion to the fault severity. According to the mentioned observations, an accurate frequency pattern is specified for static eccentricity detection in three-phase LSPMSM.
机译:本文致力于研究三相LSPMSM中的静态偏心率。利用有限元方法(FEM)建立了定子与转子之间具有静态偏心距的LSPMSM模型。讨论了由于静态偏心断层引起的气隙不均匀的磁通量和通量分量的解析表达式。介绍了使用IM的定子电流信号和永磁同步电动机(PMSM)进行静态偏心检测的各种指标。由于LSPMSM由转子组成,转子是这两个电动机的组合,因此需要评估这些功能的能力,以便在LSPMSM中进行静态偏心诊断。使用功率谱密度(PSD)在频域中分析了在存在静态离心率的情况下LSPMSM的仿真定子电流信号。事实证明,静态偏心故障会在基频附近产生一系列边带形式的低频谐波分量。而且,这些分量的幅度与故障严重程度成比例地增加。根据上述观察,为三相LSPMSM中的静态偏心率指定了准确的频率模式。

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