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Comparison of magnetic forces for IPM and SPM motor with rotor eccentricity

机译:IPM和SPM电机的磁力与转子偏心率的比较

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摘要

The permanent magnet motor is often the most important element in many precision rotor applications and also a frequent source of vibration and acoustic noise. The eccentricity between stator and rotor is inevitably introduced during manufacturing process, such as mass unbalance, shaft bow and bearing tolerances. This paper investigates radial force density and magnetic unbalanced force for IPM and SPM motors when rotor eccentricity exists. For the magnetic field analysis, a finite element method is used to account for the magnetic saturation and rotor eccentricity. The radial force density and magnetic unbalanced force are analyzed by Maxwell stress tensor and discrete Fourier transform. An IPM BLDC motor, mostly chosen to realize high speed operation, is significantly affected by rotor eccentricity due to magnetic saturation.
机译:永磁电机通常是许多精密转子应用中最重要的元件,也是振动和噪声的常见来源。在制造过程中不可避免地会引入定子和转子之间的偏心,例如质量不平衡、轴弓和轴承公差。本文研究了转子偏心时IPM和SPM电机的径向力密度和磁不平衡力。对于磁场分析,使用有限元方法来考虑磁饱和度和转子偏心率。采用麦克斯韦应力张量和离散傅里叶变换分析了径向力密度和磁不平衡力.IPM BLDC电机主要用于实现高速运行,由于磁饱和,转子偏心率会受到很大影响。

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