Indonesian Journal of Electrical Engineering and Computer Science
Vol 25, No 1: January 2022

Sliding mode control with observer for permanent magnet synchronous machine drives

Muhammad Haziq Nashren Razali (Universiti Teknikal Malaysia Melaka)
Jurifa Mat Lazi (Universiti Teknikal Malaysia Melaka)
Zulkifilie Ibrahim (Universiti Teknikal Malaysia Melaka)
Md Hairul Nizam Talib (Universiti Teknikal Malaysia Melaka)
Fizatul Aini Patakor (Politeknik Merlimau Melaka)



Article Info

Publish Date
01 Jan 2022

Abstract

This paper aims to develop the sliding mode control (SMC) scheme in sensorless permanent magnet synchronous machine (PMSM) drives to replace conventional proportional integral (PI) speed control. The SMC is formulated based on the integral sliding surface of the speed error. And the error is corrected based on the concept of Lyapunov stability. The SMC is designed with the load torque observer so that the disturbance can be estimated as feedback to the controller. The vector control technique which is also known as field-oriented control (FOC) is also used to split the stator current into the magnetic field generating part which is the direct axis and the torque generating part which is the quadrature axis. This can be done by using Park and Clarke transformations. The performance of the proposed SMC is tested under changes in load-torque and without load for different speed commands. The results prove that the SMC produces robust performances under variations of speeds and load disturbances. The effectiveness of the proposed method is verified and simulated by using MATLAB/SIMULINK software.

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