DocumentCode :
738426
Title :
A Robust Linear Field-Oriented Voltage Control for the Induction Motor: Experimental Results
Author :
Sira-Ramirez, Hebertt ; Gonzalez-Montanez, F. ; Cortes-Romero, J.A. ; Luviano-Juarez, A.
Author_Institution :
Dept. de Ing. Electr., Inst. Politec. Nac., Mexico City, Mexico
Volume :
60
Issue :
8
fYear :
2013
Firstpage :
3025
Lastpage :
3033
Abstract :
A field-oriented armature-input-voltage output-feedback control approach is proposed for the robust linear controller design on an induction motor. The scheme simultaneously solves an angular-velocity reference-trajectory tracking task and a flux magnitude regulation in the presence of arbitrary time-varying load torques and unknown nonlinearities. The field-oriented input-voltage scheme is combined with linear high-gain asymptotic observers, of the generalized proportional-integral type, and linear active-disturbance-rejection output-feedback controllers. The linear observers online estimate, in a simultaneous manner, the output phase variables and the lumped effects of the following: 1) unknown time-varying load torques and unmodeled frictions and 2) rather complex state-dependent nonlinearities present in the electric and magnetic circuits. The field-oriented part of the scheme uses the classical flux observer or simulator. The proposed control laws naturally decouple, while linearizing, the extended second-order dynamics for the angular velocity and the squared flux magnitude. The proposed control scheme is here tested on an experimental induction motor setup.
Keywords :
PI control; feedback; induction motors; linear systems; machine vector control; observers; robust control; time-varying systems; voltage control; angular-velocity reference-trajectory tracking task; electric circuits; extended second-order dynamics; field-oriented armature-input-voltage output-feedback control; field-oriented part; flux magnitude regulation; induction motor; linear active-disturbance-rejection output-feedback controllers; linear high-gain asymptotic observers; linear observers online estimate; magnetic circuits; output phase variables; proportional-integral type; robust linear field-oriented voltage control; squared flux magnitude; state-dependent nonlinearities; time-varying load torques; Angular velocity; Induction motors; Observers; Polynomials; Torque; Trajectory; Voltage control; Field-oriented control; generalized proportional–integral (GPI) control; induction motors;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2012.2201430
Filename :
6205375
Link To Document :
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