Microprocessor-Based Vector Control System for Induction Motor Servo- Drive

유도전동기 서보운전을 위한 마이크로프로세서-벡터 제어 시스템

  • 김광헌 (서울대 대학원 전기공학과) ;
  • 김영렬 (서울대 대학원 전기공학과) ;
  • 원충연 (성균관대 공대 전기공학과) ;
  • 원종수 (서울대 공대 전기공학과)
  • Published : 1991.12.01

Abstract

The time optimal position control design can be repeatedly taken from the initial state of a dynamic system to a desired one as fast as possible in the industrial drives. In this case, an induction machine parameters will vary due to temperature, frequency, and saturation effects. In particular, the rotor resistance changes critically with temperature and frequency. These changes affect the command values of the stator current components and slip speed. There is a mismatch between the commanded variables and actual ones of the induction motor drive, and this situation leads to coupling of the vector controller from the plant, i.e. the induction motor . Consequences of such a coupling include the initiation of oscillations of the rotor flux and unsuitable switching of electromagnetic torque for the induction motor servo drive. Therefore, this paper describes a rotor resistance parameter compensating method for the induction motor, And the validity of the proposed design method is confirmed by simulation studies and experiment results.

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