Sensorless Self-Tuning Adaptive Control of Nonlinear Modeled DC Motors Using DSP

DSP를 이용한 비선형 모델을 갖는 직류 전동기의 센서없는 자기동조 적응제어

  • 김윤호 (중앙대 공대 전기공학과) ;
  • 국윤상 (중앙대 공대 대학원 전기공학과) ;
  • 유연식 (대우 중앙연구소 제1연구소)
  • Published : 1995.12.01

Abstract

In this study, self-tuning adaptive control using state observer is developed. Self-tuning adaptive controller that estimates the parameters of the system in real time and generates the optimal control signals has robust characteristic about varying load and external disturbances. In addition, state observer without sensors is applied, thus the control can be performed more quickly and exactly. Since chopper is used commonly in practical drives, the characteristics of the chopper are included in state observer algorithm, which, in turn, makes the system exact estimation. Since series type DC motor has nonlinear models, linearizing approach are investigated. to realize the proposed algorithm it requires fast calculation in real time. TMS320C31, digital signal processor, is applied to realized the adaptive control algorithms.

Keywords

References

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