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Eddy-current analysis of double-stator inset-type permanent magnet brushless machines

机译:双定子嵌入式永磁无刷电机的涡流分析

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摘要

In this paper, a new multi-pole double-stator inset-type permanent magnet (PM) machine is proposed for low-speed direct-drive applications. In the outer stator, a fractional-slot concentrated winding is adopted to reduce the slot number and stator yoke height, hence saving the space and improving the torque density. In the inner stator, a vernier structure is used to reduce the winding slots and enlarge the slot area to accommodate more conductors, hence fully utilizing the inner stator space. Consequently, the torque density is improved, and the cogging torque is reduced. Since the machine structure is so unique while its operating principle is so distinct, a nodal method based network-field coupled time-stepping finite element method (NF-TS-FEM) is newly developed. The corresponding modeling and analysis are simpler and more convenient than its loop method based counterpart. The analysis of eddy-current loss in both of the PMs is conducted. The performance of the proposed machine is verified by the proposed NF-TS-FEM. © 2006 IEEE.
机译:本文针对低速直接驱动应用,提出了一种新型的多极双定子插入式永磁(PM)电机。在外部定子中,采用分数槽集中绕组以减少槽数和定子轭高度,从而节省了空间并提高了扭矩密度。在内部定子中,游标结构用于减少绕组槽并扩大槽面积以容纳更多的导体,从而充分利用内部定子空间。因此,转矩密度提高,并且齿槽转矩减小。由于机器结构如此独特,而其工作原理却如此独特,因此,新开发了一种基于节点法的网络-场耦合时步有限元法(NF-TS-FEM)。相对应的建模和分析比其基于循环方法的对应模型更简单,更方便。对两个永磁体中的涡流损耗进行了分析。建议的机器的性能已通过建议的NF-TS-FEM进行了验证。 ©2006 IEEE。

著录项

  • 作者

    Li W; Chau KT; Niu S; Li J;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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