DocumentCode :
1239800
Title :
Design, fabrication and testing of superconducting DC reactor for 1.2 kV/80 A inductive fault current limiter
Author :
Kang, Hyoungku ; Ahn, Min Cheol ; Kim, Yong Ku ; Bae, Duck Kweon ; Yoon, Yong Soo ; Ko, Tae Kuk ; Kim, Jung Ho ; Joo, Jinho
Author_Institution :
Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
Volume :
13
Issue :
2
fYear :
2003
fDate :
6/1/2003 12:00:00 AM
Firstpage :
2008
Lastpage :
2011
Abstract :
A superconducting DC reactor protects a power system by limiting the amplitude of fault current with its inductance. Therefore, it is very important to design and simulate the DC reactor precisely for making the power system stable and effective. In this paper, we designed the superconducting DC reactor of an inductive superconducting fault current limiter conceptually and acquired the optimal design parameters by using Finite Element Method (FEM). We manufactured the superconducting DC reactor and tested its characteristics at cryocooler-cooled 20 K temperature. Moreover, we compared experimental characteristics with simulation results and analyzed them. We introduced the design method of the superconducting DC reactor and the fabrication method of a 1.2 kV/80 A class DC reactor for an inductive superconducting fault current limiter. Finally, we performed the short circuit test and discussed the results.
Keywords :
critical currents; fault current limiters; finite element analysis; high-temperature superconductors; inductance; magnetic flux; overcurrent protection; power system protection; reactors (electric); short-circuit currents; superconducting coils; superconducting device testing; superconducting devices; 1.2 kV; 20 K; 80 A; FEM; design method; finite element method; inductive fault current limiter; optimal design parameters; reactor fabrication; reactor winding; short circuit test; superconducting DC reactor; Circuit testing; Fabrication; Fault current limiters; Fault currents; Finite element methods; Inductance; Inductors; Power system faults; Power system protection; Power system simulation;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2003.812966
Filename :
1212009
Link To Document :
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