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Analysis on the Quench Characteristics According to Magnetic Field of the Matrix-Type SFCL with $1{\times}3$ Matrix Structure  

Oh, Kum-Gom (조선대학교 전기공학과)
Cho, Yong-Sun (조선대학교 전기공학과)
Choi, Hyo-Sang (조선대학교 전기공학과)
Publication Information
The Transactions of the Korean Institute of Electrical Engineers P / v.57, no.3, 2008 , pp. 343-348 More about this Journal
Abstract
We investigated the quench characteristics accordance with increase of turns and applied voltage of matrix-type superconducting fault current limiter (SFCL) with $1{\times}3$ matrixes. The matrix-type SFCL consists of the trigger part to apply magnetic field and the current-limiting part to limit fault current. The fault current limiting characteristics according to the increase of magnetic field and applied voltage were nearly same. This is because the application of magnetic field has not an affect on total impedance of SFCL. When number of turns of reactor increased, the voltage difference between two superconducting units in the current-limiting part according was decreased. The resistance difference generated in two superconducting units also was decreased. Therefore, we confirmed that the differences of critical behaviors between superconducting units by application of magnetic field were decreased. By this results, we could be decided the optimum number of turns of reactor to apply magnetic field.
Keywords
Matrix Type SFCL; Magnetic Field; Trigger Part; Current-Limiting Part;
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