DocumentCode :
3275422
Title :
Vector control of an induction motor for the field weakening region with tuning of the magnetizing inductance
Author :
Choi, D.H. ; Shin, M.H. ; Lee, T.K. ; Cho, S.B. ; Hyun, D.S.
Author_Institution :
Dept. of Electr. Eng., Hanyang Univ., Seoul, South Korea
Volume :
1
fYear :
1997
fDate :
3-6 Aug 1997
Firstpage :
107
Abstract :
Above base speed, the flux level must be reduced in inverse proportion to the actual rotor speed. Then the magnetizing inductance is varied by rotor flux reference. In this region, if there is incorrect magnetizing inductance value in the vector controller, it is difficult to properly obtain the magnetizing current and the decoupling terms. The improper magnetizing current decreases the voltage margin, so that makes torque response unstable. Also, improper decoupling terms make voltage reference incorrect. The torques in the stator and rotor flux reference frame have been calculated. If the magnetizing inductance is correct, two torque values are the same. Therefore, if two values are different, the controller has different magnetizing inductance from that of the actual motor. This paper presents the new tuning scheme of the magnetizing inductance by comparing two torque values. The rotor time constant tuning and magnetizing inductance tuning scheme make the vector control system properly operating on the wide speed range. Especially, the improved system performance in the field weakening region by applying this scheme is illustrated. Computer simulation and experimental results demonstrate the efficacy of the proposed scheme
Keywords :
angular velocity control; electric current control; inductance; induction motors; machine control; magnetic flux; magnetisation; computer simulation; current control; field weakening region; flux level reduction; improper decoupling terms; induction motor; magnetizing inductance tuning; rotor flux reference frame; rotor time constant; speed control; stator flux reference frame; unstable torque response; vector control; vector control system; voltage margin; Computer simulation; Inductance; Induction motors; Machine vector control; Magnetic flux; Rotors; Stators; System performance; Torque; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Conversion Conference - Nagaoka 1997., Proceedings of the
Conference_Location :
Nagaoka
Print_ISBN :
0-7803-3823-5
Type :
conf
DOI :
10.1109/PCCON.1997.645595
Filename :
645595
Link To Document :
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