微特电机 ›› 2025, Vol. 53 ›› Issue (12): 29-33.

• 设计分析 • 上一篇    下一篇

磁通切换永磁电机电枢绕组结构设计与分析#br#

罗建华1,张  颖2   

  1. 1. 国网江苏省电力有限公司 盐城供电分公司,盐城 224100; 2. 国网江苏省电力有限公司 南通供电分公司,南通 226000
  • 出版日期:2025-12-28 发布日期:2025-12-28
  • 作者简介:罗建华( 1992—) ,男,工程师,硕士,研究方向为永磁电机系统设计与损耗研究。 张颖( 1993—) ,女,工程师, 硕士,研究方向为电机系统优化设计。
  • 基金资助:
    国网江苏省电力有限公司科技项目资助( B310A0236E10)

Design and Analysis of Armature Winding Structure in Flux-Switching Permanent Magnet Machine

LUO Jianhua1,ZHANG Ying2   

  1. 1. State Grid Jiangsu Electric Power Company Yancheng Power Supply Company,Yancheng 224100,China;
    2. State Grid Jiangsu Electric Power Company Nantong Power Supply Company,Nantong 226000,China
  • Online:2025-12-28 Published:2025-12-28

摘要: 针对定子永磁型磁通切换永磁( flux-switching permanent magnet, FSPM) 电机,研究了电枢绕组结构对电磁性能的影响。 该电机采用分数槽集中绕组与双凸极结构设计,通过将永磁体集成于定子实现高转矩密度和低空载反电动势谐波特性。 针对当前定子永磁型电机绕组结构研究不足的现状,以三相 12 槽 13 极 FSPM 电机为研究对象,重点剖析双层与 4 层绕组结构的工作机理。 通过有限元仿真对比分析表明,2 种绕组结构在电磁参数上呈现显著差异,其中 4 层绕组展现出更优的谐波抑制能力,为定子永磁型电机的绕组优化设计提供了重要理论依据。

关键词: 磁通切换, 永磁电机, 电枢绕组结构, 损耗

Abstract: This paper studies the influence of the armature winding structure on the electromagnetic performance of the stator permanent magnet flux-switching permanent magnet ( FSPM) machine. The machine adopts the design of fractional slot concentrated winding and double salient pole structure. By integrating the permanent magnet on the stator,high torque density and low harmonic characteristics of no-load back electromotive force are achieved. Aiming at the current situation of insufficient research on the winding structure of stator permanent magnet machines, a three-phase 12 slot 13 pole FSPM machine is taken as the research object,and the working mechanisms of the double-layer and four-layer winding structures are mainly analyzed. The comparative analysis through finite element simulation shows that the two winding structures present significant differences in electromagnetic parameters. Among them,the four-layer winding shows a better harmonic suppression ability,which provides an important theoretical basis for the optimization design of the winding of the stator permanent magnet machine.

Key words: flux-switching,permanent magnet machine,armature winding structure,loss