The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic

This project presents the comprehensive performance analysis on the principle of operation, design considerations and control algorithms of the field oriented control (FOC) for a permanent magnet synchronous motor (PMSM) drive system of Fuzzy Logic Controller (FLC) and proportional-integral PI...

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Main Author: Iderus, Samat
Format: Thesis
Language:English
English
English
Published: 2014
Subjects:
Online Access:http://eprints.uthm.edu.my/1674/1/24p%20SAMAT%20IDERUS.pdf
http://eprints.uthm.edu.my/1674/2/SAMAT%20IDERUS%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/1674/3/SAMAT%20IDERUS%20WATERMARK.pdf
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spelling my-uthm-ep.16742021-10-04T08:32:35Z The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic 2014-01 Iderus, Samat TK Electrical engineering. Electronics Nuclear engineering TK2000-2891 Dynamoelectric machinery and auxiliaries. Including generators, motors, transformers This project presents the comprehensive performance analysis on the principle of operation, design considerations and control algorithms of the field oriented control (FOC) for a permanent magnet synchronous motor (PMSM) drive system of Fuzzy Logic Controller (FLC) and proportional-integral PI for speed control in closed loop operation. To perform speed control of typical PMSM drives, PI controllers and FOC method are classically used. PI Controller controller suffers from the drawback that for its proper performance, the limits of the controller gains and the rate at which they would change have to be appropriately chosen. Fuzzy based gain scheduling of PI controller has been proposed in which uses in order to overcome the PI speed controller problem. The simulation results show that the proposed FLC speed controller produce significant improvement control performance compare to the PI controller. FLC speed controller produced a better performance than PI speed controller where the overshoot is totally removed and the settling time faster than PI speed controller in achieving desired output speed. The fuzzy algorithm is based on human intuition and experience and can be regarded as a set of heuristic decision rules. It is possible to obtain very good performance in the presence of varying load conditions changes of mechanical parameters and inaccuracy in the process modelling. Research and application of fuzzy logic are developing very rapidly, with promising impacts on electric drives and power electronics in future. Keywords: FOC, PMSM, FLC, PI and for Speed Control. 2014-01 Thesis http://eprints.uthm.edu.my/1674/ http://eprints.uthm.edu.my/1674/1/24p%20SAMAT%20IDERUS.pdf text en public http://eprints.uthm.edu.my/1674/2/SAMAT%20IDERUS%20COPYRIGHT%20DECLARATION.pdf text en staffonly http://eprints.uthm.edu.my/1674/3/SAMAT%20IDERUS%20WATERMARK.pdf text en validuser mphil masters Universiti Tun Hussein Onn Malaysia Fakulti Kejuruteraan Elektrik dan Elektronik
institution Universiti Tun Hussein Onn Malaysia
collection UTHM Institutional Repository
language English
English
English
topic TK Electrical engineering
Electronics Nuclear engineering
TK Electrical engineering
Electronics Nuclear engineering
spellingShingle TK Electrical engineering
Electronics Nuclear engineering
TK Electrical engineering
Electronics Nuclear engineering
Iderus, Samat
The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic
description This project presents the comprehensive performance analysis on the principle of operation, design considerations and control algorithms of the field oriented control (FOC) for a permanent magnet synchronous motor (PMSM) drive system of Fuzzy Logic Controller (FLC) and proportional-integral PI for speed control in closed loop operation. To perform speed control of typical PMSM drives, PI controllers and FOC method are classically used. PI Controller controller suffers from the drawback that for its proper performance, the limits of the controller gains and the rate at which they would change have to be appropriately chosen. Fuzzy based gain scheduling of PI controller has been proposed in which uses in order to overcome the PI speed controller problem. The simulation results show that the proposed FLC speed controller produce significant improvement control performance compare to the PI controller. FLC speed controller produced a better performance than PI speed controller where the overshoot is totally removed and the settling time faster than PI speed controller in achieving desired output speed. The fuzzy algorithm is based on human intuition and experience and can be regarded as a set of heuristic decision rules. It is possible to obtain very good performance in the presence of varying load conditions changes of mechanical parameters and inaccuracy in the process modelling. Research and application of fuzzy logic are developing very rapidly, with promising impacts on electric drives and power electronics in future. Keywords: FOC, PMSM, FLC, PI and for Speed Control.
format Thesis
qualification_name Master of Philosophy (M.Phil.)
qualification_level Master's degree
author Iderus, Samat
author_facet Iderus, Samat
author_sort Iderus, Samat
title The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic
title_short The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic
title_full The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic
title_fullStr The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic
title_full_unstemmed The field oriented control of a permanent magnet synchrounous motor (PMSM) by using fuzzy logic
title_sort field oriented control of a permanent magnet synchrounous motor (pmsm) by using fuzzy logic
granting_institution Universiti Tun Hussein Onn Malaysia
granting_department Fakulti Kejuruteraan Elektrik dan Elektronik
publishDate 2014
url http://eprints.uthm.edu.my/1674/1/24p%20SAMAT%20IDERUS.pdf
http://eprints.uthm.edu.my/1674/2/SAMAT%20IDERUS%20COPYRIGHT%20DECLARATION.pdf
http://eprints.uthm.edu.my/1674/3/SAMAT%20IDERUS%20WATERMARK.pdf
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