Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimator

A current-and-voltage serial-model stator flux estimator, based on fuzzy logic control for a speed estimation stator flux vector-controlled induction motor drive, is proposed in this study. Stator current and flux was used to establish direct stator flux vector-controlled induction motor drive and t...

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Main Authors: Yung-Chang Luo, Chen-Lung Tsai
Format: Article
Language:English
Published: SAGE Publishing 2019-12-01
Series:Journal of Low Frequency Noise, Vibration and Active Control
Online Access:https://doi.org/10.1177/1461348418784187
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author Yung-Chang Luo
Chen-Lung Tsai
author_facet Yung-Chang Luo
Chen-Lung Tsai
author_sort Yung-Chang Luo
collection DOAJ
description A current-and-voltage serial-model stator flux estimator, based on fuzzy logic control for a speed estimation stator flux vector-controlled induction motor drive, is proposed in this study. Stator current and flux was used to establish direct stator flux vector-controlled induction motor drive and the estimated synchronous speed was derived from the developed voltage-and-current serial-model stator flux estimator. The estimated rotor speed was acquired by subtracting the slip speed from the estimated synchronous speed. The adaptation mechanism of this flux estimator was designed using the fuzzy logic control approach because it is simple and suitable for use under variable conditions. This system was simulated using the MATLAB\Simulink toolbox and all the control algorithms were realized by an RX62T microcontroller. Both simulation and experimental results confirmed the effectiveness of the proposed approach.
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2048-4046
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spelling doaj.art-3b9eed51abc44c2b9b4af87ff0aabb772022-12-22T00:59:49ZengSAGE PublishingJournal of Low Frequency Noise, Vibration and Active Control1461-34842048-40462019-12-013810.1177/1461348418784187Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimatorYung-Chang LuoChen-Lung TsaiA current-and-voltage serial-model stator flux estimator, based on fuzzy logic control for a speed estimation stator flux vector-controlled induction motor drive, is proposed in this study. Stator current and flux was used to establish direct stator flux vector-controlled induction motor drive and the estimated synchronous speed was derived from the developed voltage-and-current serial-model stator flux estimator. The estimated rotor speed was acquired by subtracting the slip speed from the estimated synchronous speed. The adaptation mechanism of this flux estimator was designed using the fuzzy logic control approach because it is simple and suitable for use under variable conditions. This system was simulated using the MATLAB\Simulink toolbox and all the control algorithms were realized by an RX62T microcontroller. Both simulation and experimental results confirmed the effectiveness of the proposed approach.https://doi.org/10.1177/1461348418784187
spellingShingle Yung-Chang Luo
Chen-Lung Tsai
Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimator
Journal of Low Frequency Noise, Vibration and Active Control
title Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimator
title_full Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimator
title_fullStr Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimator
title_full_unstemmed Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimator
title_short Speed estimation vector-controlled induction motor drive based on fuzzy logic control flux estimator
title_sort speed estimation vector controlled induction motor drive based on fuzzy logic control flux estimator
url https://doi.org/10.1177/1461348418784187
work_keys_str_mv AT yungchangluo speedestimationvectorcontrolledinductionmotordrivebasedonfuzzylogiccontrolfluxestimator
AT chenlungtsai speedestimationvectorcontrolledinductionmotordrivebasedonfuzzylogiccontrolfluxestimator