Discrete-Time sliding mode with time delay estimation of a six-phase induction motor drive
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Show full item recordDate of publishing
2018Type of publication
research articleSubject(s)
DISCRETE-TIME SLIDING MODE
TIME DELAY ESTIMATION
MULTIPHASE INDUCTION MACHINE
SPEED CONTROL
CURRENT CONTROL
CURRENT CONTROL
FIELD ORIENTED CONTROL
TIME DELAY ESTIMATION
MULTIPHASE INDUCTION MACHINE
SPEED CONTROL
CURRENT CONTROL
CURRENT CONTROL
FIELD ORIENTED CONTROL
Abstract
This paper investigates the problem of stator current control in presence of uncertainties and unmeasurable rotor current for a six-phase induction motor drive. An inner control loop based on a robust discrete-time sliding mode with time delay estimation method is proposed to ensure the finite-time convergence of the stator currents to their desired references while the proportional-integral controller is used for the outer speed control. Sufficient conditions are established to ensure the stability of the closed-loop system. Simulation results were carried out to verify the performance of the proposed robust control strategy for a six-phase induction motor drive.