Title :
A voltage model flux observer design requiring no stator resistance or voltage signal information
Author :
Rehman, Habib Ur ; Xu, Longya
Author_Institution :
Dept. of Electr. Eng., United Arab Emirates Univ., Al-Ain, United Arab Emirates
Abstract :
Stator flux estimation using the voltage model flux observer requires voltage sensors and is highly sensitive to the stator resistance variation, especially at low speed. This paper designs a new sliding mode voltage model flux observer (SMVMFO). This closed loop SMVMFO is based on the current estimation error and the sliding mode functions are derivative of the stator flux along α and β axes respectively. Therefore, when the sliding mode occurs, the stator flux can be estimated by a mere integration of the sliding mode functions without requiring any voltage signal and the stator resistance information. Thus the proposed observer does not require any voltage signal information, either command or measured one, and is also completely insensitive to the stator resistance variation. The observer stability is verified. Simulation and experimental results for a direct field oriented induction motor drive system are presented to validate the proposed algorithm
Keywords :
closed loop systems; induction motor drives; machine control; magnetic flux; observers; stability; stators; variable structure systems; closed loop; current estimation error; direct field oriented induction motor drive; observer stability; sensorless control; sliding mode functions; stator flux estimation; voltage model flux observer design; Current measurement; Electric resistance; Error correction; Induction machines; Induction motor drives; Observers; Signal design; Stability; Stators; Voltage measurement;
Conference_Titel :
Applied Power Electronics Conference and Exposition, 2002. APEC 2002. Seventeenth Annual IEEE
Conference_Location :
Dallas, TX
Print_ISBN :
0-7803-7404-5
DOI :
10.1109/APEC.2002.989262