DocumentCode
2461205
Title
Improved rotor flux estimation based on voltage model for sensorless field-oriented controlled induction motor drives
Author
Wang, Gaolin ; Xu, Dianguo ; Yu, Yong ; Chen, Wei
Author_Institution
Sch. of Electr. Eng.&Autom., Harbin Inst. of Technol., Harbin
fYear
2008
fDate
15-19 June 2008
Firstpage
1887
Lastpage
1890
Abstract
Speed sensorless field-oriented vector control of induction motor depends on effective estimation of rotor flux. This paper proposes an improved rotor flux estimator based on stator voltage model with programmable low-pass filter (LPF) and an error compensator. In the voltage model based flux estimation, a LPF is normally used to replace the pure integrator to avoid integration drift and saturation problems. However, the LPF estimator may introduce magnitude and phase errors, and results in degraded estimation performance at low operating frequency. The flux estimation error is compensated according to feedback signal of the estimated flux in this paper. In addition, the LPF with a fixed cutoff frequency is difficult to provide good estimation for wide speed range. The reason is that lower cutoff frequency required for wide speed operation may result in weakening the restraint of DC drift problem. To achieve the compromise, an improved programmable LPF rotor flux estimator with a compensator for DC drift restraint is introduced. The validity of the proposed rotor flux estimator is verified by speed sensorless field-oriented vector controlled 11 kW induction motor. Experimental results demonstrate high performance of the improved rotor flux estimator.
Keywords
error compensation; feedback; induction motor drives; low-pass filters; machine vector control; power filters; rotors; stators; LPF estimator; error compensator; feedback signal; induction motor drive; phase error; power 11 kW; programmable low-pass filter; rotor flux estimation; sensorless field-oriented vector control; stator voltage model; Cutoff frequency; Frequency estimation; Induction motor drives; Induction motors; Machine vector control; Phase estimation; Rotors; Sensorless control; Stators; Voltage control;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Specialists Conference, 2008. PESC 2008. IEEE
Conference_Location
Rhodes
ISSN
0275-9306
Print_ISBN
978-1-4244-1667-7
Electronic_ISBN
0275-9306
Type
conf
DOI
10.1109/PESC.2008.4592219
Filename
4592219
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