Design and Optimization of a Slotless High-speed Permanent-Magnet Synchronous Motor with Non-magnetic Fillers in Stator

Yuan Wan, Lingfeng Zhu, Yuqi Jia, Jian Guo, Qiang Li, Xuefeng Jiang
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引用次数: 1

Abstract

High power density and high efficiency are the key requirements to be met for the high-speed motor of fuel cell air compressor application. This paper presents a slotless toroidal-winding high-speed permanent-magnet synchronous motor (HSPMSM) with nonmagnetic fillers in the stator. The slotless structure with toroidal windings and non-magnetic fillers was selected to limit high-frequency rotor eddy-current loss, iron losses, torque ripple, while improving the fixation of windings and heat transmission. The basic topology selection is first introduced. Then the multi-objective optimization process, based on genetic algorithm and finite-element analysis of electromagnetic field, is discussed and carried out aimed at finding the best compromise between power density and efficiency for a 15 kW, 120 000 rpm HSPMSM. Finally, the optimal design scheme was selected, exhibiting higher power density and efficiency than the common slotted HSPMSM scheme.
定子无磁填料无槽高速永磁同步电机的设计与优化
高功率密度和高效率是燃料电池空压机高速电机应用的关键要求。提出了一种定子内采用非磁性填料的无槽环形绕组高速永磁同步电动机。采用环形绕组和无磁填料的无槽结构,限制了高频转子涡流损耗、铁损和转矩脉动,同时提高了绕组的固定和传热性能。首先介绍了基本的拓扑选择。然后,讨论了基于遗传算法和电磁场有限元分析的多目标优化过程,旨在找到15kw, 120,000 rpm的HSPMSM功率密度和效率之间的最佳折衷。最终选择出比普通开槽HSPMSM方案具有更高功率密度和效率的优化设计方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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