Title :
Increase of Current Limiting Capacity of SFCLs by Using Matrix-Type SFCL Module
Author :
Chung, Dong Chul ; Pak, Byeong Ha ; Cho, Yong Sun ; Jung, Byung Ik ; Han, Hu Seok ; Kwak, Min Hwan ; Kang, Seung Beom ; Oh, Hyo Won ; Sung, Tae Hyun ; Han, Tae Hee ; Choi, Hyo Sang
Author_Institution :
Dept. of Electr. & Electron. Eng., Woosuk Univ., Wanju, South Korea
fDate :
6/1/2011 12:00:00 AM
Abstract :
We report the increase of the current limiting capacity of SFCLs by using the basic 1 × 3 matrix module with 3 superconducting elements. To do this, we fabricated the basic superconducting module with the 1 × 3 matrix structure which consists of a trigger part and current limiting parts. Firstly, we analysed the current limiting characteristics of the basic superconducting module with the 1 × 3 matrix structure. Secondly, we investigated characteristics about the increase of the current limiting capacity of 2 × 3 matrix-type SFCLs and 3 × 3 matrix-type SFCLs which were connected in parallel with 2 or 3 basic 1 × 3 modules. From this procedure, we approved that the easy increase of the current limiting capacity of SFCLs could be realized throughout the simply parallel connection of basic 1 × 3 modules without complex wiring. We used YBCO superconducting thin films and constructed matrix-type SFCLs by using 9 superconductors and 3 reactors. Experimental results were reported in terms of the increase characteristics of the limiting capacity for fault currents and fault voltages.
Keywords :
barium compounds; high-temperature superconductors; superconducting fault current limiters; superconducting thin films; yttrium compounds; YBCO; YBCO superconducting thin film; current limiting capacity; current limiting characteristics; current limiting part; fault current; fault voltage; matrix structure; matrix-type SFCL module; superconducting element; superconducting module; trigger part; Circuit faults; Fault currents; Inductors; Limiting; Linear matrix inequalities; Superconducting magnets; Transmission line matrix methods; Fault currents; MFCL; simultaneous quench; superconducting fault current limiters;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2010.2090448