Design of Robust QFT Controller to Damp Low Frequency Oscillations of Power System

전력계통의 저주파 진동 억제를 위한 강인하 QFT 제어기 설계

  • 정형환 (동아대학교 전기전자컴퓨터공학부) ;
  • 이정필 (동아대학교 전기전자컴퓨터공학부) ;
  • 김상효 (동아대학교 전기전자컴퓨터공학부) ;
  • 정문규 (동아대학교 전기전자컴퓨터공학부) ;
  • 안병철 (부산 울산 지방중소기업청)
  • Published : 2001.07.01

Abstract

Quantitative Feedback Theory(QFT) has been used to design a robust power system stabilizer(PSS) to improve transient and dynamic stabilities of a power system. This design technique is basically accomplished in frequency domain. The most important feature of QFT is that it is able to deal with the design problem of complicated uncertain plants. A basic idea in QFT design is the translation of closed-loop frequency-domain specifications into Nichols chart domains specifying the allowable range of the nominal open-loop response and then to design a controller by using the gain-phase loop shaping technique. This paper introduces a new algorithm to compute QFT bounds more efficiently. The propose QFT design method ensures a satisfactory performance of the PSS under a wide range of power system operating conditions.

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