Sliding-mode fuzzy logic controller based direct torque control and ripple minimization of induction motors

S. Sujitha, Hima Bindu Eluri, P. B. Savitha, S. Venkateshwarlu

Abstract


Conventional direct torque control is one of the most effective strategies for managing the torque of an induction machine (DTC), which is one of the most common types of machines. Instead, the DTC's inadequate control ability is made worse at low speeds by the audible flux and torque waves that are generated by its extremely low switching frequency. This is because the DTC's switching frequency is exceedingly low. In an effort to address these concerns, a variety of direct torque control strategies focused solely on flux and torque as their primary concerns. An improvement in DTC control and the elimination of ripples in induction motors are the goals of this research, which introduces a sliding mode fuzzy logic controller technique. The complexity of the algorithm, sensitivity of the parameters, the tracking speed, the switching loss, and the ripple reduction properties of the technique will all be thoroughly investigated. Simulation of the control mechanism is performed with MATLAB/Simulink in order to verify that it functions as intended.

Keywords


field oriented control; fuzzy logic controller; induction motor; MATLAB/Simulink; sliding mode control

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DOI: http://doi.org/10.11591/ijpeds.v17.i3.pp1714-1727

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