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Current-Limiting Characteristics of an Improved Flux-Coupling-Type SFCL

机译:改进的磁通耦合型SFCL的电流限制特性

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To suppress the short-circuit current more flexibly and effectively, this paper proposes an improved flux-coupling-type superconducting fault current limiter (SFCL) with multiple working modes. The proposed SFCL is consisting of a coupling inductance with superconducting and conventional coils, two high-speed switches, a shunt resistance and an additional limiting resistance. By controlling the statuses of the two high-speed switches, the proposed SFCL may show little impedance to not disturb the normal operation of a power system, and it will appear two-level limiting impedances to reduce the fault current into expected amplitudes. A precise simulation model of the proposed SFCL is created in the MATLAB platform, and the current-limiting performances under different working modes are verified. The digital simulation results prove the rapidity and availability of the proposed SFCL.
机译:为了更灵活且有效地抑制短路电流,本文提出了一种具有多个工作模式的改进的磁通耦合型超导故障限流器(SFCL)。所提出的SFCL由具有超导和传统线圈的耦合电感,两个高速开关,分流电阻和额外的限制性。通过控制两个高速开关的状态,所提出的SFCL可能会显示很小的阻抗以不打扰电力系统的正常操作,并且它将出现两级限制阻抗,以将故障电流降低到预期的幅度中。在MATLAB平台中创建了所提出的SFCL的精确模拟模型,并验证了不同工作模式下的限流性能。数字仿真结果证明了所提出的SFCL的快速和可用性。

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