Rеvuе des Energies Renouvelables
Volume 20, Numéro 4, Pages 649-657
2017-12-31

Robust Speed Control Of Five-phase Permanent Magnet Synchronous Motor Using Super-twisting Sliding Mode Control

Authors : Mehedi F. . Nezli L. . Mahmoudi M.o. . Taleb R. .

Abstract

This paper is devoted to the study of the performances of a robust speed nonlinear control of five-phase permanent magnet synchronous motor (PMSM).The dynamic response speed and overshoot is contradictory and the system is weak in terms of anti-interference in classical PI speed regulator. In this work, the controllers are designed using two methods: the first one using a nonlinear control based on sliding mode control (SMC). In the second, the super twisting algorithm sliding mode speed control (STSMC) is used to overcome the occurring chattering phenomena. This second solution shows good robustness with respect to parameter variations, measurement errors and noises. Finally, simulation results are given to demonstrate the effectiveness and the good performance of the proposed control methods.

Keywords

Five-phase PMSM, Sliding mode control (SMC), Chattering phenomena, Super-twisting sliding mode control (STSMC), Robust nonlinear control.

Backstepping Speed Controller Design For A Multi-phase Permanent Magnet Synchronous Motor Drive

Mehedi F. .  Nezli L. .  Mahmoudi M.o. .  Taleb R. .  Boudjana D. . 
pages 269-278.


Fuzzy Logic Based Vector Control Of Multi-phase Permanent Magnet Synchronous Motors

Mehedi F. .  Nezli L. .  Mahmoudi M.o. .  Taleb R. .  Boudana D. . 
pages 161-170.


Power Maximization Control Of Small Wind System Using Permanent Magnet Synchronous Generator

Belakehal S. .  Benalla H. .  Bentounsi A. . 
pages 307-319.