Optimal Design of 6.6kV-200A DC Reactor Type High-Tc Superconducting: Fault Current Limter

6.6kV-200A급 DC 리액터형 고온초전도한류기의 최적설계

  • 서호준 (연세대 대학원 전기전자공학과) ;
  • 이승제 ((주)프리컴시스템 연구원) ;
  • 고태국 (연세대 공과대학 전기전자공학과)
  • Published : 2002.05.01

Abstract

This study deals with the optimal design of a DC reactor type high-Tc superconducting fault current limiter(SFCL). The condition in which the cost function is minimized under given constraints is one of the things to be first considered in developing SFCLS. This condition is a group of the values corresponding to the variables the cost function depends on. In this paper, the length of tape was taken as a dependent variable, the inductance of DC reactor and the turns ratio of magnetic core reactors as independent variables. For the SFCL available at the level of 6.6kV-200A, we examined 4 cases; at the fault times of 80msec, 50msec, 30msec and 10msec. Since thyristors would be utilized instead of diodes, we chose the result at 10msec as the basic data. Considering safety factor 30%, our optimal design was decided to be the inductance 570mH, the critical current over 620A, the turns ratio 0.89 and the fault time within 20msec.

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References

  1. IEEE Transactions on Applied Superconductivity v.9 no.2 Performance of DC Reactor Type Fault Current Limiter Using High Temperature Superconducting Coil M. Yamaguchi
  2. 2001 KIEE 하계학술대회 논문집 Simulation of the Three-phase DC Reactor Type Fault Current Limiter for the Short-circuit Test Eung Ro Lee
  3. Advenced Engineering Mathematics(7th ed.) Erwin Kreyszig
  4. Inductance Calculations Frederick W. Grover