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Magnetic and Structural Finite Element Analysis of Rotor Vibrations Due to Magnetic Forces in IPM Motor

机译:IPM电动机由于磁力引起的转子振动的磁性和结构有限元分析

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We present a method to analyze magnetically induced rotor vibrations in an interior permanent magnet motor by simultaneously considering the excitation of radial, tangential, and axial magnetic forces and the gyroscopic effect. We show that the magnetic forces acting on rotor poles are multiples of the half slot harmonic originating from $A+A-B-B+C+C-$ winding as well as slot harmonics. We determine the equivalent friction forces of ball bearings and apply them to the structural finite element model to prevent numerical divergence of angular velocity of the rotor. The results of simulation show that rotor vibrations are mainly affected by the slot harmonics of the magnetic forces, and it was validated by the experiments measuring rotor vibrations with an accelerometer and a slip ring.
机译:我们提出了一种通过同时考虑径向,切向和轴向磁力的激励以及陀螺效应来分析内部永磁电动机中的磁感应转子振动的方法。我们表明,作用在转子磁极上的磁力是来自$ A + A-B-B + C + C- $绕组以​​及槽谐波的半槽谐波的倍数。我们确定球轴承的等效摩擦力并将其应用于结构有限元模型,以防止转子角速度的数值发散。仿真结果表明,转子的振动主要受磁力的缝隙谐波影响,并通过使用加速度计和滑环测量转子振动的实验得到了验证。

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