DocumentCode
1308875
Title
Model Reference Adaptive Control of Five-Phase IPM Motors Based on Neural Network
Author
Guo, Lusu ; Parsa, Leila
Author_Institution
Dept. of Electr., Comput., & Syst. Eng., Rensselaer Polytech. Inst., Troy, NY, USA
Volume
59
Issue
3
fYear
2012
fDate
3/1/2012 12:00:00 AM
Firstpage
1500
Lastpage
1508
Abstract
This paper presents a novel model reference adaptive control of five-phase interior-permanent-magnet (IPM) motor drives. The primary controller is designed based on an artificial neural network (ANN) to simulate the nonlinear characteristics of the system without knowledge of accurate motor models or parameters. The proposed motor drive decouples the torque and flux components of five-phase IPM motors by applying multiple-reference-frame transformation. Therefore, the motor can be easily driven below the rated speed with the maximum-torque-per-ampere operation or above the rated speed with the flux weakening operation. The ANN-based primary controller consists of a radial basis function network which is trained online to adapt system uncertainties. The complete IPM motor drive is simulated in Matlab/Simulink environment and implemented experimentally utilizing a dSPACE DS1104 controller board on a five-phase prototype IPM motor.
Keywords
adaptive control; control system synthesis; machine control; motor drives; neurocontrollers; permanent magnet motors; radial basis function networks; Matlab-Simulink environment; artificial neural network; dSPACE DS1104 controller board; five-phase interior-permanent-magnet motor drives; flux components; flux weakening operation; maximum-torque-per-ampere operation; model reference adaptive control; multiple-reference-frame transformation; nonlinear characteristics; primary controller; radial basis function network; system uncertainties; torque components; Adaptation models; Induction motors; Mathematical model; Motor drives; Permanent magnet motors; Reluctance motors; Torque; Model reference adaptive control (MRAC); multiphase machines; neural network; permanent-magnet machines;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2011.2163371
Filename
6003782
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