Archive | 2021

Compensating the performance of permanent magnet synchronous machines for fully electric vehicle using LPV control

 
 
 

Abstract


Received Mar 3, 2021 Revised May 20, 2021 Accepted Jun 22, 2021 The state-of-the-art robust H∞ linear parameter-varying controller is designed for wide speed operating range for non-linear mathematical model of permanent magnet synchronous machines (PMSM) in d-q reference frame for fully electric vehicle. This study propose polytopic approach using rotor speed as scheduling variable to reformulate mathematical model of PMSM into linear parameter varying (LPV) form. The weights were optimized for sensitivity and complementary sensitivity function. The simulation results illustrate fast tracking and enhanced performance of the proposed control technique over wide range of rotor speed. Moreover, as part of this work, the results of H∞ linear parameter varying controller is validated by comparing it with linear quadratic integrator and proportional integral derivative (PID) control techniques to show the effectiveness of the proposed control technique.

Volume None
Pages None
DOI 10.11591/eei.v10i4.2946
Language English
Journal None

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