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首页> 外文期刊>Magnetics, IEEE Transactions on >Torque Pulsation Minimization in Spoke-type Interior Permanent Magnet Motors With Skewing and Sinusoidal Permanent Magnet Configurations
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Torque Pulsation Minimization in Spoke-type Interior Permanent Magnet Motors With Skewing and Sinusoidal Permanent Magnet Configurations

机译:带有倾斜和正弦永磁配置的轮辐型内部永磁电动机中的转矩脉动最小化

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摘要

This paper proposes two approaches to minimize torque pulsations, including cogging torque and electromagnetic torque ripple, for spoke-type interior permanent magnet (IPM) motors. The first approach is an improved skewing method, in which the rotor PMs are skewed by being symmetrical in the axial direction within one magnet pole pitch for not only reducing torque pulsations but also maintaining maximum available torque and eliminating unbalanced axial electromagnetic forces. The second one is a sinusoidal PM-shaping method with the aim of achieving the same advantageous effects as the proposed skewing method. Both the proposed methods adopt stepped rotor-PM schemes, and the effects of the rotor-PM step numbers on motor performance are investigated. To highlight the advantages of the proposed approaches, a spoke-type IPM motor with the conventional PM configuration is adopted as the basic model. All the motor characteristics, such as back electromotive force, cogging torque, and electromagnetic torque, are predicted by a 3-D finite-element method with the aid of JMAG-Designer.
机译:本文针对辐条型内部永磁(IPM)电机提出了两种方法来减小转矩脉动,包括齿槽转矩和电磁转矩脉动。第一种方法是一种改进的偏斜方法,其中,转子PM通过在一个磁极螺距内在轴向方向上对称而偏斜,以不仅减少转矩脉动,而且保持最大可用转矩并消除不平衡的轴向电磁力。第二种是正弦波PM整形方法,旨在获得与所提出的倾斜方法相同的有利效果。两种提出的方​​法都采用步进转子-PM方案,并研究了转子-PM步数对电动机性能的影响。为了突出提出的方法的优势,采用具有传统PM配置的辐条型IPM电机作为基本模型。在JMAG-Designer的帮助下,通过3-D有限元方法可以预测所有电动机特性,例如反电动势,齿槽转矩和电磁转矩。

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