DocumentCode
1296326
Title
Fuzzy robust speed controller for detuned field-oriented induction motor drive
Author
Chao, K.H. ; Liaw, C.M.
Author_Institution
Dept. of Electr. Eng., Nat. Tsing Hua Univ., Hsinchu, Taiwan
Volume
147
Issue
1
fYear
2000
fDate
1/1/2000 12:00:00 AM
Firstpage
27
Lastpage
36
Abstract
The speed control performance improvement of a detuned indirect field-oriented (IFO) induction motor drive is studied. First, the dynamic behaviour of a detuned IFO induction motor drive is observed, and its transfer function model is established. Then a proportional plus integral-derivative (PID) two-degree-of-freedom controller (2DOFC) is designed for an ideal IFO induction motor drive for a nominal case with the desired dynamic response. As the variation of motor parameters occurs, the detuning of field-orientation accompanying the load parameter changes may significantly worsen the speed dynamic response. In this case, a compensation signal is yielded by a proposed fuzzy robust controller (FRC) in order to preserve the prescribed response. Since the compensation signal is adaptively tuned by a model following the error driven fuzzy weighting controller, and moreover, the compromise between control effort and performance is considered, the robust model following speed response is obtained. Effectiveness of the proposed controller is verified by simulation and by measured results
Keywords
angular velocity control; control system synthesis; dynamic response; fuzzy control; induction motor drives; machine vector control; robust control; three-term control; transfer functions; PID two-degree-of-freedom controller; compensation signal; control effort; detuned field-oriented induction motor drive; dynamic behaviour; dynamic response; error driven fuzzy weighting controller; fuzzy robust controller; fuzzy robust speed controller; indirect field-oriented control; motor parameters variation; proportional plus integral-derivative controller; robust model following speed response; speed control performance improvement; speed dynamic response; transfer function model;
fLanguage
English
Journal_Title
Electric Power Applications, IEE Proceedings -
Publisher
iet
ISSN
1350-2352
Type
jour
DOI
10.1049/ip-epa:20000016
Filename
820074
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