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Low Speed Estimation of Sensorless DTC Induction Motor Drive Using MRAS with Neuro Fuzzy Adaptive Controller

Publication Type : Journal Article

Publisher : International Journal of Electrical and Computer Engineering

Source : International Journal of Electrical and Computer Engineering (IJECE), Volume 8, p.2691 (2018)

Campus : Bengaluru

School : School of Engineering

Department : Electrical and Electronics

Year : 2018

Abstract : This paper presents a closed loop Model Reference Adaptive system (MRAS) observer with artificial intelligent Nuero fuzzy controller (NFC) as the adaptation technique to mitigate the low speed estimation issues and to improvise the performance of the Sensorless Direct Torque Controlled (DTC) Induction Motor Drives (IMD). Rotor flux MRAS and reactive power MRAS with NFC is explored and detailed analysis is carried out for low speed estimation. Comparative analysis between rotor flux MRAS and reactive power MRAS with PI as well as NFC as adaptive controller is performed and results are presented in this paper. The comparative analysis among these four speed estimation methods shows that reactive power MRAS with NFC as adaptation mechanism shows reduced speed estimation error and actual speed error at steady state operating conditions when the drive is subjected to low speed operation. Simulation carried out using MATLAB-Simulink software to validate the performance of the drive especially at low speeds with rated and variable load conditions.

Cite this Research Publication : Mini Sujith, P., S., Satheesh, H., and N, D., “Low Speed Estimation of Sensorless DTC Induction Motor Drive Using MRAS with Neuro Fuzzy Adaptive Controller”, International Journal of Electrical and Computer Engineering (IJECE), vol. 8, p. 2691, 2018.

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