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New structure of nonsuperconducting fault current limiter for wide ranges of currents based on PWM switching strategy

机译:基于PWM开关策略的大电流非超导故障限流器的新结构

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A new structure of nonsuperconducting fault current limiter (NSFCL) is proposed in this paper. The structure is capable to control the magnitude of wide ranges of fault currents due to consumer choices. In order to control the magnitude of line current, four similar resistors which bypassed by semiconductor switches are in series with the reactor in the DC bus. The proposed circuit is not only capable to be used in wide ranges of fault currents, but also reduces voltage stress across switching components. Furthermore, low voltage semiconductor switches have lower conduction losses and the implementation cost is less than previous presented (NSFCL) topologies. These features can be counted as economic advantages of the proposed structure. The simulation results are provided to clarify the novelty of the circuit.
机译:提出了一种新的非超导故障限流器(NSFCL)结构。由于用户的选择,该结构能够控制较大范围的故障电流。为了控制线电流的大小,四个类似的电阻(通过半导体开关旁路)与DC总线中的电抗器串联。所提出的电路不仅能够用于较大范围的故障电流,而且还可以减小开关元件之间的电压应力。此外,低压半导体开关具有较低的传导损耗,并且实现成本低于先前提出的(NSFCL)拓扑。这些特征可以算作所提出结构的经济优势。提供仿真结果以阐明电路的新颖性。

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