Magnetization Characteristics Due to Fault Angle of Transformer Type SFCL with Two Isolated Secondary Windings

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초록

In this paper, a transformer type superconducting fault current limiter (SFCL) with two isolated secondary windings was fabricated to increase the current limiting capacity. As the magnetization current increased due to the large transient fault current immediately after the fault, the magnetization force variation, the operating range of the flux linkage, and the voltage region variation were compared at fault angles of 0 degrees and 90 degrees, respectively. The short-circuit test analyzed the current limiting operation, power consumption, and energy consumption characteristics according to the fault angle immediately after the fault occurrence. The results showed that the fault angle of 0 degrees could limit the fault current much more than the fault angle of 90 degrees. In addition, it was confirmed that the magnetization force variation, the operating range of the flux linkage, and the voltage induced in the primary winding were all much larger at the fault angle of 0 degrees than at the fault angle of 90 degrees.

키워드

Fault angleIsolated secondary windingsMagnetization currentMagnetization force variationSuperconducting fault current limiter (SFCL)Transformer typeCURRENT LIMITERFLUX
제목
Magnetization Characteristics Due to Fault Angle of Transformer Type SFCL with Two Isolated Secondary Windings
저자
Han, Tae-HeeLim, Sung-HunKo, Seok-Cheol
DOI
10.1007/s42835-020-00534-2
발행일
2020-11
유형
Article; Early Access
저널명
Journal of Electrical Engineering & Technology
15
6
페이지
2501 ~ 2508