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Simulation of short-current limiting performance of 3-phase reactor superconducting fault current limiter

机译:三相电抗器超导故障限流器短时限流性能的仿真

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The 3-phase reactor superconducting fault current limiter (SCFCL) consists of three superconducting windings with the same number of turns, which are wound on a single iron core. In a normal condition, it is a good conductor with no impedance because the flux is zero in the iron core. However, under a single-line-to-ground fault, it becomes a reactor with large inductance suppressing the fault current, Furthermore, for two or three-phase short circuits, the reactance of the SCFCL keep zero but it is good for limiting the fault current by the abruptly increasing resistance of the superconducting winding. In this paper, its equivalent impedance under every operating condition has been concluded and the simulations of short-circuit current limiting performance of designed prototype were carried out. The results are in good agreement with the theoretical analysis.
机译:三相电抗器超导故障电流限制器(SCFCL)由三个具有相同匝数的超导绕组组成,它们缠绕在单个铁芯上。在正常情况下,它是无阻抗的良导体,因为铁芯中的磁通量为零。然而,在单线接地故障下,它变成了一个具有大电感的电抗器,可抑制故障电流。此外,对于两相或三相短路,SCFCL的电抗保持为零,但对于限制电流的影响是有利的。通过突然增加超导绕组的电阻产生故障电流。本文总结了在各种工作条件下的等效阻抗,并对设计原型的短路电流限制性能进行了仿真。结果与理论分析吻合良好。

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