Analysis on Fault Current Limiting Operations of Three-Phase Transformer Type SFCL Using Secondary Windings with Non-Isolation

Tae-Hee Han, Seok-Cheol Ko, Sung-Hun Lim
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引用次数: 0

Abstract

Three-phase transformer type superconducting fault current limiter(SFCL) using secondary windings with non-isolation, which consisted of three-phase transformer windings wound on three legs of E-I iron core and three superconducting modules(SCMs), were suggested and its fault current limiting operations according to ground-fault types were analyzed. To verify the effective operation of three-phase transformer type SFCL using secondary windings with non-isolation, the unsymmetrical ground and the symmetrical ground faults were applied into three-phase power simulated system with the suggested SFCL. From the analysis on the experiment, three-phase transformer type SFCL using secondary windings with non-isolation showed lower power burden of three SCMs compared to the SFCL using secondary winding with isolation, especially in case of an unsymmetrical ground fault occurrence.
二次绕组非隔离三相变压器式SFCL故障限流操作分析
提出了一种采用非隔离二次绕组的三相变压器型超导故障限流器(SFCL),由三相变压器绕组绕在E-I铁芯的三支腿上与三个超导模块(scm)组成,并根据接地故障类型分析了其故障限流操作。为了验证采用非隔离二次绕组的三相变压器式SFCL的有效运行,将非对称接地和对称接地故障应用于三相电力仿真系统。从实验分析来看,采用二次绕组不隔离的三相变压器型SFCL与采用二次绕组带隔离的SFCL相比,三台单片机的功率负荷更低,特别是在发生不对称接地故障时。
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