Sliding Mode Control Approach with Integrated Disturbance Observer for PMSM Speed System

Lei Yuan;Yunhao Jiang;Lu Xiong;Pan Wang
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引用次数: 1

Abstract

The research on high-performance vector control of permanent magnet synchronous motor (PMSM) drive system plays an extremely important role in electrical drive system. To further improve the speed control performance of the system, a fast non-singular end sliding mode (FNTSM) surface function based on traditional NTSM control is developed. The theoretical analysis proves that the FNTSM surface function has a faster dynamic response and more finite-time convergence. In addition, for the self-vibration problem caused by high sliding mode switching gain, an FNTSM control method with anti-disturbance capability was designed based on the linear disturbance observer (DO), i.e. the FNTSMDO method was employed to devise the PMSM speed regulator. The comparative simulation and experiment results with traditional PI control and NTSM control methods indicate that the FNTSMDO method could improve the dynamic performance and anti-interference of the system.
永磁同步电机速度系统的集成扰动观测器滑模控制方法
永磁同步电机(PMSM)驱动系统的高性能矢量控制研究在电气驱动系统中具有极其重要的地位。为了进一步提高系统的速度控制性能,在传统NTSM控制的基础上,开发了一种快速非奇异端滑模(FNTSM)表面函数。理论分析证明,FNTSM曲面函数具有更快的动态响应和更多的有限时间收敛性。此外,针对高滑模切换增益引起的自振问题,设计了一种基于线性扰动观测器(DO)的具有抗扰动能力的FNTSM控制方法,即采用FNTSMDO方法设计PMSM调速器。仿真和实验结果与传统的PI控制和NTSM控制方法的比较表明,FNTSMDO方法可以提高系统的动态性能和抗干扰能力。
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