여자기 제어 효과를 고려한 에너지함수 유도 및 적용가능성에 관한 기초 연구

Derivation of the Energy Function Reflecting Exciter Control Effects

  • 김구한 (연세대학교 전기전자공학과) ;
  • 최병곤 (연세대학교 전기전자공학과) ;
  • 박정도 (연세대학교 전기전자공학과) ;
  • 문영현 (연세대학교 전기전자공학과)
  • 발행 : 2000.11.25

초록

This paper presents an energy function which provides the direct relationships between the system stability and parameters of the exciter system. The energy function is derived from the energy conservation law by using the first motion integral. he time derivative does not absolutely satisfy the seminegativeness. However dE/dt usually has big negative value just after the fault clearing so that the energy is rapidly decreased. In this situation, the system state can be obviously confined in a stable region if the intial energy is less than the UEP energy. With these observation, two theorems are developed regarding the state confinement and asymptotic stability. Based on two theorems a new approximated direct energy method is developed to analyze the transient stability with the consideration of the exciter control effects. The proposed method has been tested for a single-machine-infinite bus system.

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