DocumentCode :
1563737
Title :
Stable MRAS-based sensorless scheme design strategy for high power traction drives
Author :
Vicente, I. ; Brown, Michael ; Renfrew, A. ; Endemano, A. ; Garin, X.
Author_Institution :
Univ. of Manchester, Manchester
fYear :
2008
Firstpage :
562
Lastpage :
567
Abstract :
- A model reference adaptive system (MRAS) based observer is the dominant speed estimation scheme for sensorless induction motor drives. The main drawback of fundamental model based estimation techniques is instability in the low speed region under regenerating conditions. Furthermore, accuracy and estimation stability is especially influenced by stator resistance thermal variation in this region. The main novelty of the proposed sensorless control scheme lies in its flexibility for ease of use in both stator flux and conventional rotor flux control drives. Both degrees of freedom of stator currents errors are used for speed and stator resistance estimation in parallel whilst the speed estimation adaptive function is reconfigured for assuring stability in the whole speed region. Overall stability is analyzed by linear adaptive control theory methods such as closed-loop system Bode and poles placement.
Keywords :
adaptive control; closed loop systems; induction motor drives; matrix algebra; stability; traction motor drives; closed-loop system Bode; conventional rotor flux control drives; degrees of freedom; dominant speed estimation scheme; estimation stability; fundamental model based estimation techniques; high power traction drives; linear adaptive control theory methods; model reference adaptive system based observer; poles placement; sensorless induction motor drives; stator currents errors; stator flux; stator resistance thermal variation; High power traction; full-order adaptive observer; induction machine; speed sensorless; stability analysis;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Power Electronics, Machines and Drives, 2008. PEMD 2008. 4th IET Conference on
Conference_Location :
York
ISSN :
0537-9989
Print_ISBN :
978-0-86341-900-3
Type :
conf
Filename :
4528901
Link To Document :
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