A novel topology of bridge-type superconducting fault current limiter

W. Fei, Bin Wu
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引用次数: 12

Abstract

A new topology of bridge-type SFCL, which can limit not only the rising speed but also the steady state value of fault current, is proposed in this paper. The new SFCL includes a bridge composed of 4 SCRs and 2 diodes, a superconducting coil and an ordinary bypass reactor. In normal status, the bridge works as a rectifier, the voltage across the coil is zero if the current of the coil keeps greater than the peak value of the load current. When a fault occurs, the fault current is limited in the first cycle by the coil, when the fault is detected, the bridge can be controlled working as two bidirectional switches and the coil is inserted in the ac circuit and the steady fault current can also be limited. By adding the bypass reactor, the cost of the new SFCL can be minimized. Parameter design and simulations are presented. The simulation proves the validity of the new SFCL.
一种新型桥式超导故障限流器的拓扑结构
提出了一种既能限制故障电流上升速度又能限制故障电流稳态值的新型桥式SFCL拓扑结构。新的SFCL包括一个由4个可控硅和2个二极管组成的桥,一个超导线圈和一个普通旁路反应器。在正常状态下,桥作为整流器工作,如果线圈的电流保持大于负载电流的峰值,则线圈上的电压为零。当发生故障时,线圈将故障电流限制在第一个周期,当检测到故障时,可以控制桥作为两个双向开关工作,并将线圈插入交流电路中,也可以限制稳定的故障电流。通过增加旁通反应器,可以将新型SFCL的成本降至最低。给出了参数设计和仿真结果。仿真结果证明了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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