DocumentCode
66082
Title
Closed-Loop MRAS Speed Observer for Linear Induction Motor Drives
Author
Accetta, Angelo ; Cirrincione, Maurizio ; Pucci, Marcello ; Vitale, Gianpaolo
Author_Institution
Inst. of Intell. Syst. for Autom., Palermo, Italy
Volume
51
Issue
3
fYear
2015
fDate
May-June 2015
Firstpage
2279
Lastpage
2290
Abstract
This paper presents a closed-loop model reference adaptive system (CL-MRAS) speed observer developed for linear induction motor (LIM) drives. Starting from the structure of the CL-MRAS speed observer developed in the literature for rotating induction motors, a corresponding speed observer for LIMs has been developed here. It is based on the LIM dynamic model taking into consideration its dynamic end effects. In particular, the following aspects are original: 1) It employs the voltage and current models of the LIM considering its dynamic end effects, 2) it proposes a net thrust model including the braking force caused by the dynamic end effects; 3) it models the friction load of the LIM drive experimentally obtained with off-line tests. The proposed sensorless technique has been tested on a purposely developed experimental set-up. Results show that the CL-MRAS observer permits the drive to operate down to the speed of 0.01 m/s, i.e., about 0.15% of the rated speed, which is about 20 times lower than the minimum working speed achieved with other observers implemented on the same LIM drive, such as the total least squares (TLS) MRAS observer, the TLS EXIN full-order Luenberger observer, the extended Kalman filter, and, finally, the TLS EXIN Kalman filter.
Keywords
closed loop systems; induction motor drives; linear induction motors; model reference adaptive control systems; observers; sensorless machine control; CL-MRAS speed observer; LIM drive; braking force; closed loop model reference adaptive system; linear induction motor drive; rotating induction motor; thrust model; Dynamics; Force; Inductors; Magnetic flux; Mathematical model; Observers; Resistance; Closed-Loop Model Reference Adaptive System (CL-MRAS); Closed-loop model reference adaptive system (MRAS) (CL-MRAS); Dynamic End effects; Linear Induction Motor (LIM); Sensorless Control; dynamic end effects; linear induction motor (LIM); sensorless control;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2014.2375377
Filename
6971145
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