LAPSE:2023.34422
Published Article

LAPSE:2023.34422
DC Current Limiting Characteristics of Flux-Coupled Type SFCL Using Superconducting Element Connected in Parallel in a DC System
April 26, 2023
Abstract
In this paper, the fault current limiting (FCL) characteristics of a flux-coupled type superconducting fault current limiter (SFCL) with parallel connection between two windings in a DC system were analyzed. The flux-coupled type SFCL was composed of two coils connected in parallel and a superconducting element (SE), which was connected in series with the secondary coil. The flux-coupled type SFCL works in DC systems similar to those in AC systems. Before a fault occurs, the respective magnetic fluxes generated by the two coils connected in parallel offset each other, maintaining the voltage induced in the two coils at zero. In case of a fault, however, resistance is generated in the SE, preventing the magnetic fluxes generated by the two coils from offsetting each other. Thus, some voltage is induced in the two coils, and this starts to limit the fault current. DC short circuit tests were conducted, and the test results confirmed that the flux-coupled type SFCL with the two parallel connected coils was effective in limiting the fault current in a DC system. Additionally, the effect of the wiring direction of the two coils on the SFCL’s FCL performance and operating current, limiting impedance, and instantaneous power load was further analyzed, and as a result, the performance conditions of the SFCL in a DC system were determined.
In this paper, the fault current limiting (FCL) characteristics of a flux-coupled type superconducting fault current limiter (SFCL) with parallel connection between two windings in a DC system were analyzed. The flux-coupled type SFCL was composed of two coils connected in parallel and a superconducting element (SE), which was connected in series with the secondary coil. The flux-coupled type SFCL works in DC systems similar to those in AC systems. Before a fault occurs, the respective magnetic fluxes generated by the two coils connected in parallel offset each other, maintaining the voltage induced in the two coils at zero. In case of a fault, however, resistance is generated in the SE, preventing the magnetic fluxes generated by the two coils from offsetting each other. Thus, some voltage is induced in the two coils, and this starts to limit the fault current. DC short circuit tests were conducted, and the test results confirmed that the flux-coupled type SFCL with the two parallel connected coils was effective in limiting the fault current in a DC system. Additionally, the effect of the wiring direction of the two coils on the SFCL’s FCL performance and operating current, limiting impedance, and instantaneous power load was further analyzed, and as a result, the performance conditions of the SFCL in a DC system were determined.
Record ID
Keywords
DC systems, fault current limiting (FCL), flux-coupled type, instantaneous power, superconducting fault current limiter (SFCL)
Suggested Citation
Kim YP, Ko SC. DC Current Limiting Characteristics of Flux-Coupled Type SFCL Using Superconducting Element Connected in Parallel in a DC System. (2023). LAPSE:2023.34422
Author Affiliations
Kim YP: Division of Electrical and Electronic Control Engineering, Kongju National University, Chungnam 32586, Korea
Ko SC: Industry-University Cooperation Foundation & Regional-Industrial Application Research Institute, Kongju National University, Chungnam 32586, Korea [ORCID]
Ko SC: Industry-University Cooperation Foundation & Regional-Industrial Application Research Institute, Kongju National University, Chungnam 32586, Korea [ORCID]
Journal Name
Energies
Volume
14
Issue
4
First Page
1096
Year
2021
Publication Date
2021-02-19
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14041096, Publication Type: Journal Article
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LAPSE:2023.34422
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https://doi.org/10.3390/en14041096
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Apr 26, 2023
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