DocumentCode :
2403129
Title :
High performance control strategy of current controlled PWM inverter fed induction motor servo drive system
Author :
Park Min-Ho ; Kim Young-Real ; Chung-Yuen, Won ; Tae-Hoon, Kim ; Soon-Chan, Eong
Author_Institution :
Dept. of Electr. Eng., Seoul Nat. Univ., South Korea
fYear :
1989
fDate :
6-10 Nov 1989
Firstpage :
89
Abstract :
The authors describe a newly developed high-performance control system for a vector-controlled induction motor. In order to realize this system, the authors adopted the current controlled PWM (pulse-width modulated) inverter with a hysteresis controller. Changes in temperature, current, and slip frequency vary motor parameters. If these parameters are not compensated in the vector controller, poor performance results. Therefore, a priori knowledge of the motor parameters is needed to implement indirect vector control on a high-performance induction motor servo system where the position of rotor flux is estimated. A parameter adaptation scheme has been proposed to compensate for the machine parameter variations. The authors present some of the relevant mathematics necessary to study parameter sensitivity in the time-optimal position control of an induction motor. Simulation and experimental results verify the predicted performance
Keywords :
electric drives; induction motors; invertors; pulse width modulation; servomotors; PWM inverter fed induction motor; current controlled; high-performance control system; hysteresis controller; rotor flux; servo drive system; time-optimal position control; vector-controlled induction motor; Control systems; Frequency; Hysteresis motors; Induction motors; Machine vector control; Pulse inverters; Pulse width modulation; Pulse width modulation inverters; Servomotors; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, 1989. IECON '89., 15th Annual Conference of IEEE
Conference_Location :
Philadelphia, PA
Type :
conf
DOI :
10.1109/IECON.1989.69617
Filename :
69617
Link To Document :
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