微特电机 ›› 2026, Vol. 54 ›› Issue (5): 52-57.

• 驱动控制 • 上一篇    下一篇

基于新型趋近率的 PMSM 改进型全局滑模控制

付  强,欧权楷   

  1. 长沙理工大学 人工智能学院,长沙 410004
  • 出版日期:2026-05-28 发布日期:2026-05-28

Improved Global Sliding Mode Control of PMSM Based on Novel Approach Rate

FU Qiang,OU Quankai   

  1. School of Artificial Intelligence,Changsha University of Science & Technology,Changsha 410004,China
  • Online:2026-05-28 Published:2026-05-28

摘要: 针对传统全局滑模控制在永磁同步电机( permanent magnet synchronous motor,PMSM) 应用中存在的滑模面演化时间过长、抖振严重以及由此引起的启动与调速性能下降、电流纹波和转矩脉动等问题,提出了一种改进型全局滑模控制与自适应趋近率相结合的调速控制方法,通过采用双向衰减函数优化时变非线性项,加速滑模面演化速度,提高系统动态响应性能。 引入自适应趋近率,根据系统状态调节趋近速率,有效抑制高频抖振。 实验结果表明,滑模面演化时间缩短了 60%( 从 0. 02 s 缩短至 0. 005 s) ,该方法在提高 PMSM 响应速度的同时,显著改善了负载突变工况下的电流和转矩性能,电流波动幅值从 0. 5 r / min 减少到极小程度。

关键词: 永磁同步电机, 全局滑模控制, 双向衰减函数, 自适应趋近律

Abstract: In response to the problems of traditional global sliding mode control in permanent magnet synchronous motor (PMSM) applications,such as excessively long sliding surface evolution time,severe chattering,and the resulting decline in startup and speed regulation performance,current ripple,and torque pulsation,this paper proposes a speed control method combining improved global sliding mode control with adaptive approaching rate. By using a bidirectional decay function to optimize the time-varying nonlinear term, the sliding surface evolution speed was accelerated, improving the system ’ s dynamic response performance. An adaptive approaching rate was introduced to adjust the approaching speed according to the system state, effectively suppressing high-frequency chattering. Experimental results show that the sliding surface evolution time is reduced by 60% ( from 0. 02 s to 0. 005 s) ,and the proposed method significantly improves the current and torque performance under load step conditions while increasing PMSM response speed, reducing current fluctuation amplitude from 0. 5 r / min to a minimal level.

Key words: permanent magnet synchronous motor, global sliding mode control, bidirectional attenuation function, adaptive reaching law

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