DocumentCode :
838094
Title :
Decoupled Current Control of Sensorless Induction-Motor Drives by Integral Sliding Mode
Author :
Comanescu, Mihai ; Xu, Longya ; Batzel, Todd D.
Author_Institution :
Penn State Univ., Altoona, PA
Volume :
55
Issue :
11
fYear :
2008
Firstpage :
3836
Lastpage :
3845
Abstract :
This paper discusses the problems of current decoupling control and controller tuning associated with sensorless vector-controlled induction-motor (IM) drives. In field-oriented control, the d-q synchronous-frame currents should be regulated to have independent dynamics such that the torque production of the IM resembles that of a separately excited dc motor. However, these currents are not naturally decoupled, and decoupling compensators should be used. Current loop tuning is an additional problem, since controller gains obtained by theoretical methods or simulation, quite often, do not work well on the real system. This paper proposes a new approach for current control that uses integral-sliding-mode (ISM) controllers to achieve decoupling. The synchronous-frame control voltages are synthesized as the sum of two controller outputs: a traditional one (PI) that acts on an ideal plant model and an ISM controller. The ISM controller decouples the d-q currents and compensates the parameter variations in the current loops of the machine. Simulations and experimental tests on a 0.25-hp three-phase induction machine show satisfactory results.
Keywords :
control system synthesis; electric current control; induction motor drives; machine vector control; variable structure systems; controller tuning; current loop tuning; d-q synchronous-frame currents; decoupled current control; field-oriented control; integral sliding mode; sensorless vector-controlled induction-motor drives; Current control; decoupling; induction machine; integral sliding mode (ISM); sensorless control;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2008.2003201
Filename :
4601478
Link To Document :
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