微特电机 ›› 2026, Vol. 54 ›› Issue (7): 42-46.

• 设计分析 • 上一篇    下一篇

基于 Maxwell 与 Workbench 联合仿真的电机齿槽转矩优化分析

杨厚发1,2,张龙隆1,2,魏克森1,2   

  1. 1. 贵州航天林泉电机有限公司,贵阳 550008; 2. 国家精密微特电机工程技术研究中心,贵阳 550008
  • 出版日期:2026-07-28 发布日期:2026-07-28
  • 作者简介:杨厚发( 1994—) ,男,中级工程师,从事直流电机设计与研发。 张龙隆 ( 1996—) ,通信作者,男,助理工程师,从事直流电机设计与研发。

Optimization Analysis of Motor Cogging Torque Based on Maxwell and Workbench Co-Simulation

YANG Houfa1,2,ZHANG Longlong1,2,WEI Keseng1,2   

  1. 1. Guizhou Aerospace Linquan Motor Co. ,Ltd. ,Guiyang 550008,China; 2. National Engineering Research Centre for Precision Microtechnology,Guiyang 550008,China
  • Online:2026-07-28 Published:2026-07-28

摘要: 为有效降低电机齿槽转矩并保障电机综合性能, 本文提出一种基于麦克斯韦 ( Maxwell ) 和工作台( Workbench) 的联合仿真参数优化方案,针对转子槽型结构参数开展齿槽转矩敏感度分析,精准筛选影响显著的关键参数;以齿槽转矩最小化为优化目标,结合电机各项性能指标设置约束条件,采用响应面法与多目标遗传算法完成参数优化设计。 仿真结果表明,优化后电机齿槽转矩由 19. 305 1 mN · m 降至 8. 300 2 mN · m,降幅达到了 57%,并且电机输出特性等均满足指标要求,该方法为电机的齿槽转矩抑制及参数优化提供了高效、可靠的技术路径,具有良好的工程应用价值。

关键词: 永磁直流电机, 齿槽转矩, 参数优化

Abstract: To effectively reduce the cogging torque of the motor and ensure its comprehensive performance,this paper proposes a parametric optimization modeling method based on the co-simulation of Maxwell and Workbench. Sensitivity analysis of cogging torque is carried out for the rotor slot structural parameters to accurately screen out the key parameters with significant impacts. Taking the minimization of cogging torque as the optimization objective and setting constraint conditions in combination with various motor performance indicators, the response surface method and multi-objective genetic algorithm are adopted to complete the parametric optimization design. The simulation results show that the cogging
torque of the optimized motor is reduced from 19. 305 1 mN · m to 8. 300 2 mN · m,with a reduction rate of 57%,and the motor output characteristics and other performance indicators all meet the design requirements. This method provides an efficient and reliable technical approach for the cogging torque suppression and parametric optimization of motors,and has good engineering application value.

Key words: permanent magnet direct current motor, cogging torque, parametric optimization

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