MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor Drives
This paper presents a newly designed switching linear feedback structure of sliding mode control (SLF-SMC) plugged with an model reference adaptive system (MRAS) based sensorless field-oriented control (SFOC) for induction motor (IM). Indeed, the performance of the MRAS depends mainly on the operati...
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Online Access: | https://www.mdpi.com/1996-1073/14/11/3083 |
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doaj-7247aa886e934915b91c2afd8ddc1c372021-06-01T01:08:42ZengMDPI AGEnergies1996-10732021-05-01143083308310.3390/en14113083MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor DrivesMohamed Amine Fnaiech0Jaroslaw Guzinski1Mohamed Trabelsi2Abdellah Kouzou3Mohamed Benbouzid4Krzysztof Luksza5Department of Electrical and Electronics Engineering, College of Engineering, University of Bahrain, Isa Town, Zallaq 32038, BahrainDepartment of Electric Drives and Energy Conversion, Faculty of Electrical and Control Engineering, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdańsk, PolandDepartment of Electronic and Communications Engineering, Kuwait College of Science and Technology, Doha District, Block 4, Doha 27235, KuwaitApplied Automation and Industrial Diagnosis Laboratory (LAADI), Faculty of Science and Technology, Djelfa University, Djelfa 17000, AlgeriaInstitut de Recherche Dupuy de Lome, University of Brest, 29238 Brest, FranceDepartment of Electric Drives and Energy Conversion, Faculty of Electrical and Control Engineering, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdańsk, PolandThis paper presents a newly designed switching linear feedback structure of sliding mode control (SLF-SMC) plugged with an model reference adaptive system (MRAS) based sensorless field-oriented control (SFOC) for induction motor (IM). Indeed, the performance of the MRAS depends mainly on the operating point and the parametric variation of the IM. Hence, the sliding mode control (SMC) could be considered a good control alternative due to its easy implementation and robustness. Simulation and experimentation results are presented to show the superiority of the proposed SLF-SMC technique in comparison with the classical PI controller under different speed ranges and inertia conditions.https://www.mdpi.com/1996-1073/14/11/3083sliding mode controlswitching linear feedbacksensorless controlMRASinduction motor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mohamed Amine Fnaiech Jaroslaw Guzinski Mohamed Trabelsi Abdellah Kouzou Mohamed Benbouzid Krzysztof Luksza |
spellingShingle |
Mohamed Amine Fnaiech Jaroslaw Guzinski Mohamed Trabelsi Abdellah Kouzou Mohamed Benbouzid Krzysztof Luksza MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor Drives Energies sliding mode control switching linear feedback sensorless control MRAS induction motor |
author_facet |
Mohamed Amine Fnaiech Jaroslaw Guzinski Mohamed Trabelsi Abdellah Kouzou Mohamed Benbouzid Krzysztof Luksza |
author_sort |
Mohamed Amine Fnaiech |
title |
MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor Drives |
title_short |
MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor Drives |
title_full |
MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor Drives |
title_fullStr |
MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor Drives |
title_full_unstemmed |
MRAS-Based Switching Linear Feedback Strategy for Sensorless Speed Control of Induction Motor Drives |
title_sort |
mras-based switching linear feedback strategy for sensorless speed control of induction motor drives |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2021-05-01 |
description |
This paper presents a newly designed switching linear feedback structure of sliding mode control (SLF-SMC) plugged with an model reference adaptive system (MRAS) based sensorless field-oriented control (SFOC) for induction motor (IM). Indeed, the performance of the MRAS depends mainly on the operating point and the parametric variation of the IM. Hence, the sliding mode control (SMC) could be considered a good control alternative due to its easy implementation and robustness. Simulation and experimentation results are presented to show the superiority of the proposed SLF-SMC technique in comparison with the classical PI controller under different speed ranges and inertia conditions. |
topic |
sliding mode control switching linear feedback sensorless control MRAS induction motor |
url |
https://www.mdpi.com/1996-1073/14/11/3083 |
work_keys_str_mv |
AT mohamedaminefnaiech mrasbasedswitchinglinearfeedbackstrategyforsensorlessspeedcontrolofinductionmotordrives AT jaroslawguzinski mrasbasedswitchinglinearfeedbackstrategyforsensorlessspeedcontrolofinductionmotordrives AT mohamedtrabelsi mrasbasedswitchinglinearfeedbackstrategyforsensorlessspeedcontrolofinductionmotordrives AT abdellahkouzou mrasbasedswitchinglinearfeedbackstrategyforsensorlessspeedcontrolofinductionmotordrives AT mohamedbenbouzid mrasbasedswitchinglinearfeedbackstrategyforsensorlessspeedcontrolofinductionmotordrives AT krzysztofluksza mrasbasedswitchinglinearfeedbackstrategyforsensorlessspeedcontrolofinductionmotordrives |
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