基于三维有限元分析的无铁AFPM电机线圈和磁体形状优化

L. Del Ferraro, R. Terrigi, F. G. Capponi
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引用次数: 9

摘要

无芯永磁(PM)电机对于要求轻量化和高效率的应用是可行的解决方案,因为定子中没有铁芯可以减少机器重量和高频损耗。由于气隙较大,主磁通不是由磁路驱动进入定子的,因此需要进行三维磁场分析。本文根据每焦耳损耗产生的最大转矩对AFPM无铁机进行了优化。提出了几种线圈和磁体的拓扑结构,并对其进行了三维有限元分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coil and Magnet Shape Optimization of an Ironless AFPM Machine by Means of 3D FEA
Coreless permanent magnet (PM) machines can be a viable solution for applications where light-weight and high- efficiency are requested, as the absence of an iron core in the stator reduces machine weight and losses at high-frequency losses. Due to the large airgap, main flux is not driven by a magnetic path into the stator, hence a 3D field analysis is necessary. In this paper, an AFPM ironless machine has been optimized in terms of maximum torque produced per joule losses. Several topologies of coils and magnets have been proposed and investigated with 3D FEA.
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