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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >The analysis of the fault currents according to core saturation and fault angles in an inductive high-Tc superconducting fault current limiter
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The analysis of the fault currents according to core saturation and fault angles in an inductive high-Tc superconducting fault current limiter

机译:电感性高Tc超导故障限流器中根据铁心饱和度和故障角度对故障电流进行分析

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摘要

In this paper, we investigate the fault currents in an inductive high-Tc superconducting fault current limiter (SFCL). The currents can cause serious damage to the reliability and stability of the power system. To analyze the transient fault characteristics of the SFCL, we fabricated an inductive high-Tc SFCL and tested it under different fault conditions. To simulate a fault condition, a fault angle controller was connected to a load. As the firing angle of the triac in the fault angle controller was controlled, various angles of the fault instant can be selected. An important parameter for the design and the fabrication of the SFCL is the reduction of the fault currents. If abnormally high currents due to low impedance of SFCL do not occur in the network with SFCL, the currents flowing under fault conditions can be limited to a desired value within one cycle. The fault current reduction depends on saturation, normal zone propagation velocity, turns ratio, and the fault angle (the instant of the fault occurrence within a cycle).
机译:在本文中,我们研究了电感性高Tc超导故障限流器(SFCL)中的故障电流。电流会严重损害电源系统的可靠性和稳定性。为了分析SFCL的瞬态故障特性,我们制造了电感性高Tc SFCL并在不同故障条件下对其进行了测试。为了模拟故障状况,将故障角度控制器连接到负载。由于在故障角度控制器中控制了双向可控硅的触发角,因此可以选择故障瞬间的各种角度。 SFCL设计和制造的重要参数是减少故障电流。如果在带有SFCL的网络中没有出现由于SFCL低阻抗引起的异常高电流,则可以将在故障条件下流动的电流限制在一个周期内的期望值。故障电流的减小取决于饱和度,正常区域传播速度,匝数比和故障角度(一个周期内发生故障的瞬间)。

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