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초전도 자성체 : 모의전력계통에 적용된 자속구속형 초전도 전류제한기의 전류제한 특성 분석

한태희, 임성훈

Superconductor and Magnetic Materials : Analysis on Current Limiting Characteristics of a Fault-Lock Type SFCL Applied into a Simulated Power System

Tae Hee Han, Sung Hun Lim
J Electr Electron Mater 2011;24(2):141-146.
Published online: February 1, 2011
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When the current of the superconducting element exceeds its critical current by the fault occurrence, the quench of the high-TC superconducting fault current limiter (HTSC) comprising the flux-lock type superconducting fault current limiter (SFCL) occurs. Simultaneously, the magnetic flux in the iron core induces the voltage in each coil, which contributes to limit the fault current. In this paper, the fault current limiting characteristics of the flux-lock type SFCL as well as the load voltage sag suppressing characteristics according to the flux-lock type SFCL`s winding direction were investigated. To confirm the fault current limiting and the voltage sag suppressing characteristics of the this SFCL, the short-circuit tests for the simulated power system with the flux-lock type SFCL were carried out. The flux-lock type SFCL designed with the additive polarity winding was shown to perform more effective fault current limiting and load voltage sag suppressing operations through the fast quench occurrence right after the fault occurs and the fast recovery operation after the fault removes than the flux-lock type SFCL designed with the subtractive polarity winding.

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Superconductor and Magnetic Materials : Analysis on Current Limiting Characteristics of a Fault-Lock Type SFCL Applied into a Simulated Power System
J Electr Electron Mater. 2011;24(2):141-146.   Published online February 1, 2011
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Include:
Superconductor and Magnetic Materials : Analysis on Current Limiting Characteristics of a Fault-Lock Type SFCL Applied into a Simulated Power System
J Electr Electron Mater. 2011;24(2):141-146.   Published online February 1, 2011
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