Performance Enhancement of RMRAC Controller for Permanent Magnet Synchronous Motor using Disturbance Observer

외란관측기를 이용한 영구자석 동기전동기에 대한 참조모델 견실적응 제어기의 성능개선

  • Jin, Hong-Zhe (Department of Electronics Engineering, Pusan National Unuversity) ;
  • Lim, Hoon (Department of Electronics Engineering, Pusan National Unuversity) ;
  • Lee, Jang-Myung (Department of Electronics Engineering, Pusan National Unuversity)
  • 김홍철 (부산대학교 전자공학과) ;
  • 임훈 (부산대학교 전자공학과) ;
  • 이장명 (부산대학교 전자공학과)
  • Published : 2007.10.26

Abstract

PMSM (Permanent Magnet Synchronous Motor) current control is a most inner loop of electromechanical driving systems and it plays a foundation role in the hierarchy's control loop of several mechanical machine systems. In this paper, a simple RMRAC control scheme for the PMSM is proposed in the synchronous frame. In the synchronous current model, the input signal is composed of as a calculated voltage by adaptive laws and system disturbances. The gains of feed-forward and feed-back controller are estimated by the proposed e-modification methods respectively, where the disturbances are assumed as filtered current tracking errors. After the estimation of the disturbances from the tracking errors, the corresponding voltage is fed forward to control input to compensate for the disturbances. The proposed method is robust to high frequency disturbances and has a fast dynamic response to time varying reference current trajectory. It also shows a good real-time performance duo to it's simplicity of control structure. Through the simulations considering several cases of external disturbances and experimental results, efficiency of the proposed method is verified

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