Compensation of the secondary voltage of a coupling capacitor voltage transformer in the time-domain

히스테리시스 특성을 고려한 CCVT 2차 전압 보상 방법

  • 강용철 (전북대학교 전자정보 공학부) ;
  • 정태영 (전북대학교 전자정보 공학부) ;
  • 김연희 (전북대학교 전자정보 공학부) ;
  • 장성일 (한국 아이이디 이엔지) ;
  • 김용균 (한국 아이이디 이엔지)
  • Published : 2006.07.12

Abstract

A coupling capacitor voltage transformer (CCVT) is used in extra high voltage and ultra high voltage transmission systems to obtain the standard low voltage signal for protection and measurement. To obtain the high accuracy at the power system frequency, a tuning reactor is connected between a capacitor and a voltage transformer (VT). Thus, no distortion of the secondary voltage is generated when no fault occurs. However, when a fault occurs, the secondary voltage of the CCVT has some errors due to the transient components resulting from the fault. This paper proposes an algorithm for compensating the secondary voltage of the CCVT in the time domain. With the values of the secondary voltage of the CCVT, the secondary and the primary currents are obtained; then the voltage across the capacitor and the tuning reactoris calculated and then added to the measured secondary voltage. The proposed algorithm includes the effect of the non-linear characteristic of the VT and the influence of the ferro-resonance suppression circuit. Test results indicate that the algorithm can successfully compensate the distorted secondary voltage of the CCVT irrespective of the fault distance, the fault inception angle and the fault impedance.

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