DocumentCode :
1776422
Title :
A synchronous reference frame sliding mode based estimator for the speed and flux magnitude of the induction motor drive
Author :
Comanescu, Mihai
Author_Institution :
Dept. of Eng., Penn State Altoona, Altoona, PA, USA
fYear :
2014
fDate :
18-20 June 2014
Firstpage :
725
Lastpage :
730
Abstract :
The paper discusses the problem of speed and rotor flux magnitude estimation for the induction motor (IM) drive and presents a sliding mode observer (SMO) that is constructed based on the IM model in the synchronous reference frame. To implement the control scheme of the IM drive, generally, the speed and the flux magnitude are needed. In a control scheme with speed and flux regulation, they are used for d and q axis feedback. If the current control scheme uses a decoupling compensator, the flux and speed are needed to compute the decoupling voltages. The paper develops a SM observer for the flux magnitude based on the synchronous reference frame model of the IM. The method assumes that the d-q voltages and currents are available. The observer requires knowledge of the motor speed - instead, the SMO is fed with a speed estimate (assumed inaccurate). Using a specific gain design, the SMO is made insensitive to the input speed inaccuracy. Using the equivalent controls of the observer, the initial speed estimate is corrected to obtain two secondary speed estimates. A weighted average speed estimate that combines the secondary estimates is also shown. The theoretical findings are supported with simulations.
Keywords :
angular velocity control; compensation; electric current control; induction motor drives; observers; rotors; sensorless machine control; variable structure systems; IM model; SM observer; SMO; current control scheme; d-q currents; d-q voltages; decoupling compensator; decoupling voltage computation; flux regulation; induction motor drive; rotor flux magnitude estimation; sliding mode observer; speed regulation; synchronous reference frame model; synchronous reference frame sliding mode based estimator; weighted average speed estimation; Equations; Induction motors; Mathematical model; Observers; Rotors; Synchronous motors; induction motor; rotor flux estimation; sensorless control; sliding mode observer; speed estimation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM), 2014 International Symposium on
Conference_Location :
Ischia
Type :
conf
DOI :
10.1109/SPEEDAM.2014.6871912
Filename :
6871912
Link To Document :
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