Title :
Model predictive control of induction motor with delay time compensation: An experimental assessment
Author :
Uddin, Muslem ; Mekhilef, Saad ; Nakaoka, Mutsuo ; Rivera, Marco
Author_Institution :
Dept. of Electr. Eng., Univ. of Malaya, Kuala Lumpur, Malaysia
Abstract :
This paper proposes a delay time compensation method in the model predictive control (MPC) of induction motor (IM) at high and low speed considering the selection of optimum switching vector to actuate the three-phase voltage source inverter (VSI). The proposed control method compensates the delay time to improve the performance of the system, and consequently maintain the accurate tracking of the references at different speed regions. The control scheme utilizes the discrete nature of the system, and uses the possible switching vectors of the converter in an intuitive manner. Therefore, based on minimum quality function the optimum switching vector is selected for the next sampling time actuation of the power converter. The control scheme is validated through the MATLAB simulation and experimental validation in DS1104 R&D Controller Platform. The simulation and experimental results prove the feasibility of the proposed method with encouraging performance.
Keywords :
compensation; delays; induction motors; invertors; machine control; oscilloscopes; power convertors; predictive control; switching systems (control); vectors; DS1104 R&D controller platform; MATLAB simulation; MPC; VSI; delay time compensation; induction motor; minimum quality function; model predictive control; optimum switching vector selection; power converter; sampling time actuation; speed regions; three-phase voltage source inverter; Delays; Induction motors; Prediction algorithms; Predictive control; Rotors; Stators; Torque; Delay Time Compensation; Induction Motor; Power Converter; Predictive Control; Torque & Flux;
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2015 IEEE
Conference_Location :
Charlotte, NC
DOI :
10.1109/APEC.2015.7104402