DocumentCode
991674
Title
A MRAS-based adaptive pseudoreduced-order flux observer for sensorless induction motor drives
Author
Kojabadi, Hossein Madadi ; Chang, Liuchen ; Doraiswami, Rajamani
Author_Institution
Dept. of Electr. Eng., Sahand Univ. of Technol., Tabriz, Iran
Volume
20
Issue
4
fYear
2005
fDate
7/1/2005 12:00:00 AM
Firstpage
930
Lastpage
938
Abstract
The performance of vector-controlled sensorless induction motor drives is generally poor at very low speeds, especially at zero speed due to offset and drift components in the acquired feedback signals, and the increased sensitivity of dynamic performance to model parameter mismatch resulting especially from stator resistance variations. The speed estimation is adversely affected by stator resistance variations due to temperature and frequency changes. This is particularly significant at very low speeds where the calculated flux deviates from its set values. Therefore, it is necessary to compensate for the parameter variation in sensorless induction motor drives, particularly at very low speeds. This paper presents a novel method of estimating both the shaft speed and stator resistance of an induction motor. In this novel scheme, an adaptive pseudoreduced-order flux observer (APFO) is developed. In comparison to the adaptive full-order flux observer (AFFO), the proposed method consumes less computational time, and provides a better stator resistance estimation dynamic performance. Both simulation and experimental results confirm the superiority of the proposed APFO scheme for a wide range of resistance variations from 0 to 100%.
Keywords
induction motor drives; machine control; model reference adaptive control systems; observers; parameter estimation; shafts; stators; adaptive full-order flux observer; adaptive pseudoreduced-order flux observer; model reference adaptive system; shaft speed estimation; stator resistance estimation; vector-controlled sensorless induction motor drives; Feedback; Frequency estimation; Induction motor drives; Induction motors; Lyapunov method; Sensorless control; Shafts; Stators; Temperature sensors; Velocity control; Adaptive observers; estimation; induction motor drives; model reference adaptive control; sensorless control scheme;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2005.850969
Filename
1461477
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