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Prediction of Torque Pulsations in Brushless Permanent-Magnet Motors Using Improved Analytical Technique

机译:基于改进分析技术的永磁无刷电动机转矩脉动预测

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Prediction of Torque Pulsations in Brushless Permanent-Magnet Motors Using Improved Analytical Technique Torque pulsations have prominent effects on the performance of brushless permanent- magnet (PM) machines. There are different sources of torque ripples in PM motors. These torque pulsations depend on the shape of the flux density distribution in the airgap region. For predicting the open-circuit airgap field distribution in brushless PM motors, a two dimensional (2-D) analytical method, in which the direction of magnetization, either radial or parallel and the effect of the stator slot-openings are taken into account, is used. The method uses an improved 2-D permeance model. In order to evaluate the accuracy of this method, a 2-D time-stepping FEM coupled with the two motion equations is used. A 3-phase, 36-slot, 4-pole, 5 HP, brushless PM motor is modeled by two methods. In this analysis both, the radial and parallel magnetization of the brushless motor are considered. The results obtained by the analytical method are compared with those obtained by FE analysis that shows the valuable accuracy of the analytical method for performance calculations in design and optimization processes.
机译:使用改进的分析技术预测无刷永磁电动机中的转矩脉动转矩脉动对无刷永磁(PM)机器的性能具有显着影响。永磁电机存在不同的转矩波动来源。这些转矩脉动取决于气隙区域中的通量密度分布的形状。为了预测无刷PM电动机的开路气隙场分布,采用了一种二维(2-D)分析方法,其中考虑了径向或平行的磁化方向以及定子槽孔的影响,用来。该方法使用改进的二维渗透模型。为了评估该方法的准确性,使用了二维时步有限元法和两个运动方程式。三相,36槽,4极,5 HP,无刷PM电动机通过两种方法建模。在此分析中,考虑了无刷电机的径向和平行磁化强度。通过分析方法获得的结果与通过有限元分析获得的结果进行比较,表明有限元分析方法对于设计和优化过程中性能计算的宝贵准确性。

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