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Simulation study on a new solid state fault current limiter for high-voltage power systems

机译:新型高压电力系统固态故障限流器的仿真研究

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摘要

In this paper, a new type solid state fault current limiter (SSFCL) with bypass reactor is presented for high-voltage electrical network. The operating principle and control strategies of new SSFCL are discussed in detail. The SSFCL integration with the electrical network has been simulated using simulation package PSIM. It is shown that in normal operation condition the limiter has no obvious effect on loads. When fault happens, the bypass reactor will insert the fault line automatically without delay to limit the short circuit current. By the appropriate control strategies, the solid state bridge will retreat from the fault line as soon as possible. There is no oscillation as well as overvoltage excited by the limiter when the fault current is limited. The control mode is simple and facile. The proposed system is numerically tested, it proved that the theoretical prediction and the current limiting performance is satisfactory for practical use.
机译:本文提出了一种新型固态故障电流限制器(SSFCL),具有旁路电抗器,用于高压电气网络。详细讨论了新SSFCL的运行原理和控制策略。使用仿真包PSIM模拟了与电气网络的SSFCL集成。结果表明,在正常操作状态下,限制器对负载没有明显的影响。当发生故障时,旁路电抗器将自动插入故障线,无延迟限制短路电流。通过相应的控制策略,固态桥将尽快从断层线退出。当故障电流有限时,限制器没有振荡以及限制器激励的过压。控制模式简单且宽容。在数值测试中,提出的系统证明了理论预测和电流限制性的性能对于实际使用令人满意。

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