Vector Control for the Rotor Resistance Compensation of Induction Motor

유도전동기 회전자 저항 보상을 위한 벡터제어

  • 박현철 (정인대학 정보통신계열) ;
  • 이수원 (정인대학 정보통신계열) ;
  • 김영민 (정인대학 정보통신계열) ;
  • 황종선 (정인대학 정보통신계열)
  • Published : 2001.11.01

Abstract

In the vector control methods of induction motor, the stator current is divided into the flux and torque component current. By controlling these components respectively, the methods control independently flux and torque as in the DC motor and improve the control effects. To apply the vector control methods, the position of the rotor current is identified. The indirect vector control use the parameters of the machine to identify the position of rotor flux. But due to the temperature rise during machine operation, the variation of rotor resistance degrades the vector control. To solve the problem, the q-axis is aligned to reference frame without phase difference by comparing the real flux component with the reference flux component. Then to compensate the slip, PI controller is used. The proposed method keeps a constant slip by compensating the gain of direct slip frequency when the rotor resistance of induction motor varies. To prove the validations of the proposed algorithm in the paper, computer simulations is executed.

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