A Fuzzy-Based Controller of a Modified Six-Phase Induction Motor Driving a Pumping System View Full Text


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Article Info

DATE

2019-03

AUTHORS

Mohamed I. Abdelwanis, Ragab A. El-Sehiemy

ABSTRACT

This study presents the implementation and analysis of the modified six-phase induction motor (IM) that drives a centrifugal pumping system. The three-phase IM is modified to operate as a six-phase IM to enhance the torque pulsation and to increase the motor reliability. Dynamic models of six-phase IM are derived. A fuzzy-based procedure for fine-tuning of the PID controller parameters is proposed in order to sustain the motor speed at the predefined reference values. Added to that, a six-phase low-pass filter is designed to eliminate the undesirable harmonics contents. An optimized PID controller accomplished with a scalar V/f closed-loop six-phase induction motor control is presented and its simulation results are discussed. Pulse width modulation (PWM)-based simulation studies were employed for six-phase induction motor using MATLAB/SIMULINK software. The simulation results show that the PWM inverter reduces the THD for current and voltage waveforms and the overall performance of the modified six-phase IM is enhanced compared with the equivalent three-phase induction motor. More... »

PAGES

1-13

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http://scigraph.springernature.com/pub.10.1007/s40998-018-0066-4

DOI

http://dx.doi.org/10.1007/s40998-018-0066-4

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