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Nonlinear Speed Control for PMSM System Using Sliding-Mode Control and Disturbance Compensation Techniques

IEEE Transactions on Power Electronics · 2012 · Vol. 28(3) · pp. 1358–1365
Xiaoguang ZhangLizhi SunKe ZhaoLi Sun

Abstract

In order to optimize the speed-control performance of the permanent-magnet synchronous motor (PMSM) system with different disturbances and uncertainties, a nonlinear speed-control algorithm for the PMSM servo systems using sliding-mode control and disturbance compensation techniques is developed in this paper. First, a sliding-mode control method based on one novel sliding-mode reaching law (SMRL) is presented. This SMRL can dynamically adapt to the variations of the controlled system, which allows chattering reduction on control input while maintaining high tracking performance of the controller. Then, an extended sliding-mode disturbance observer is proposed to estimate lumped uncertainties directly, to compensate strong disturbances and achieve high servo precisions. Simulation and experimental results both show the validity of the proposed control approach.

Sensorless Control of Electric MotorsAdaptive Control of Nonlinear SystemsControl Systems in EngineeringControl theory (sociology)Sliding mode controlServomechanismNonlinear systemCompensation (psychology)Controller (irrigation)ServomotorElectronic speed controlControl engineeringServo
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699
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References
Variable structure control of nonlinear systems: a new approach
IEEE Transactions on Industrial Electronics · 1993 · 1,274 citations
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