2022
DOI: 10.1109/tasc.2022.3161864
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Comparison and Analysis of Impedance According to the Winding Method of Superconducting Element Connected to DC Circuit Breaker

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Cited by 2 publications
(2 citation statements)
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“…When the circuit is operated in a steady state, the values of R ns and R nc are zero; when the circuit is undergoing an unexpected fault, the values of R ns and R nc will be increased abruptly. The total resistance of the R-SFCL depends on the total number of circuit units and the resistance of each unit, and hence the R-SFCL has zero resistance in the superconducting state and exhibits resistive characteristics in the quenching state 30 , 31 , which can limit the rapidly increasing fault currents and greatly reduce the shutdown pressure of the CCCB-SDCCB on high currents.
Figure 1 R-SFCL unit structure diagram.
…”
Section: R-sfcl Modelmentioning
confidence: 99%
“…When the circuit is operated in a steady state, the values of R ns and R nc are zero; when the circuit is undergoing an unexpected fault, the values of R ns and R nc will be increased abruptly. The total resistance of the R-SFCL depends on the total number of circuit units and the resistance of each unit, and hence the R-SFCL has zero resistance in the superconducting state and exhibits resistive characteristics in the quenching state 30 , 31 , which can limit the rapidly increasing fault currents and greatly reduce the shutdown pressure of the CCCB-SDCCB on high currents.
Figure 1 R-SFCL unit structure diagram.
…”
Section: R-sfcl Modelmentioning
confidence: 99%
“…The current limiting characteristics of R-SFCL mainly take advantage of the zero resistance characteristics and quench resistance characteristics of superconductors, that is, the resistance is 0 in the superconducting state, and it presents resistance characteristics in the quench state [27,28].…”
Section: Working Principle Of R-sfclmentioning
confidence: 99%