DocumentCode :
1297038
Title :
A New Model Reference Adaptive Controller for Four Quadrant Vector Controlled Induction Motor Drives
Author :
Teja, A. V Ravi ; Chakraborty, Chandan ; Maiti, Suman ; Hori, Yoichi
Author_Institution :
Electr. Eng. Dept., Indian Inst. of Technol. (IIT), Kharagpur, India
Volume :
59
Issue :
10
fYear :
2012
Firstpage :
3757
Lastpage :
3767
Abstract :
In this paper, a new model reference adaptive controller (MRAC) for the speed estimation of the vector-controlled induction motor drive is presented. The proposed MRAC is formed using instantaneous and steady-state values of X (= v⃗* × i⃗ where v = voltage and i = current vector in synchronously rotating reference frame), which is a fictitious quantity and has no physical significance. This formulation is not only simply realizable but also made the sensorless drive stable in all the four quadrants of operation. Speed estimation does not involve computation of stator or rotor flux. Requirement of no additional sensors makes the drive suitable for retrofit applications. A simple modification of the controller can estimate the stator resistance in all the four quadrants of operation, if speed signal is available. The proposed MRAC-based speed sensorless vector control drive as well as the stator resistance estimation technique has been simulated in MATLAB/SIMULINK and experimentally validated through a dSPACE-1104-based laboratory prototype. A study on stability of such systems is also added.
Keywords :
angular velocity control; induction motor drives; machine vector control; model reference adaptive control systems; sensorless machine control; stability; MRAC; MRAC-based speed sensorless vector control drive; Matlab-Simulink; dSPACE-1104-based laboratory prototype; four quadrant vector controlled induction motor drives; model reference adaptive controller; rotor flux; speed estimation; speed signal; stator flux; stator resistance estimation technique; system stability; Adaptation models; Estimation; Mathematical model; Resistance; Rotors; Stability analysis; Stators; Induction motor; model reference adaptive controller (MRAC); sensorless; stator resistance; vector control;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2011.2164769
Filename :
5983439
Link To Document :
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