DocumentCode :
1210276
Title :
A novel startup scheme of stator-flux-oriented vector-controlled induction motor drive without torque jerk
Author :
Chun, Tae-Won ; Choi, Meong-Kyu ; Bose, Bimal K.
Author_Institution :
Dept. of Electr. Eng., Univ. of Ulsan, South Korea
Volume :
39
Issue :
3
fYear :
2003
Firstpage :
776
Lastpage :
782
Abstract :
This paper proposes a novel zero-speed startup scheme of a stator-flux-oriented speed-sensorless vector-controlled induction motor drive that does not generate any torque jerk. A programmable cascaded three-stage low-pass filter (LPF) method is used for flux vector estimation. Usually, a torque jerk is generated at the vector control transition due to time delay in developing the stator flux by the three-stage LPF. At standstill condition, an algorithm is derived that calculates the stator flux using only the stator currents. A feedforward control strategy of the stator flux is developed to eliminate the torque jerk during transition from the standstill mode to the vector control mode. The performance of the newly developed startup scheme has been verified by simulation and then experimentally on a 3-hp induction motor drive, where the control was implemented by a 32-bit TMS320C30-type digital signal processor. The performance of the drive was found to be excellent in both simulation and experiment.
Keywords :
digital control; digital signal processing chips; feedforward; induction motor drives; low-pass filters; machine vector control; magnetic flux; magnetic variables control; parameter estimation; programmed control; starting; stators; 3 hp; TMS320C30-type digital signal processor; feedforward control strategy; flux vector estimation; induction motor drive; programmable cascaded three-stage low-pass filter; standstill condition; startup scheme; stator-flux-oriented vector-control; time delay; torque jerk estimation; vector control mode; vector control transition; Delay effects; Induction generators; Induction motor drives; Induction motors; Low pass filters; Machine vector control; Sensorless control; Static VAr compensators; Stators; Torque control;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2003.811779
Filename :
1201546
Link To Document :
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