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Analytical Energy-Based Approaches for Cogging Torque Calculation in Surface-Mounted PM Motors

机译:基于能量的基于解析法的表面贴装式永磁电动机的齿槽转矩计算

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This paper deals with the cogging torque calculation in permanent-magnet (PM) surface-mounted machines based on energy approach. Three different analytical co-energy methods are assessed, and innovative computation techniques for calculating co-energy are applied to reduce the computations time and burden. Also, an air-gap function due to the slot is presented for the simple method. Then, the results achieved by the analytical methods are validated by the finite-element method (FEM). The cogging torque using such methods has a good agreement with FEM. Three case studies consisting of brushless PM (BLPM) motors with slotted stator structure are considered to show the efficiency of the proposed methods. Finally, different methods are compared in terms of their computational complexity and accuracy.
机译:本文研究了基于能量方法的永磁(PM)表面安装电机的齿槽转矩计算。评估了三种不同的分析协同能方法,并应用了创新的计算协同能的计算技术来减少计算时间和负担。此外,为简单方法介绍了由于缝隙而引起的气隙功能。然后,通过有限元方法(FEM)验证了通过分析方法获得的结果。使用此类方法的齿槽转矩与FEM有很好的一致性。考虑由开槽定子结构的无刷PM(BLPM)电机组成的三个案例研究,以证明所提出方法的效率。最后,比较了不同方法的计算复杂性和准确性。

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