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A novel topology and control strategy of DC Fault Current Limiter

机译:DC故障电流限制器的新型拓扑和控制策略

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DC power distribution network is widely used in long-distance and large-capacity transmission, undersea transmission, and interconnection system for its small system loss and high controlled characteristic. The fault current limiter (FCL) takes a very important part in the DC distribution system. Since there is no natural zero crossing point of the current in DC system, it is more difficult to limit fault current in DC system than in AC system. Low shortcut impedance could lead to a high current rate of rise, which can cause heat, arc and electrical stress damage to the DC system in such a short time when the breakers are not ready to act. This paper proposed a new type of solid state fault current limiter to restrain the shortcut current and to make sure the breakers act correctly. In normal situation, the limiter plays as a transmission line. But when fault occurs, it works as a buck circuit to control the fault current within a certain desired range. In this way, the fault damage can be reduced. Experiment results can be taken to prove the limiter.
机译:直流配电网络广泛应用于长途和大容量传输,海底变速器和互连系统,用于其小系统损失和高受控特性。故障电流限制器(FCL)在DC分配系统中采用非常重要的部分。由于DC系统中没有电流的自然零交叉点,因此更难以限制DC系统中的故障电流而不是AC系统。低快捷阻抗可能导致高电流升高速率,这可能在断路器尚未准备好采用时在这种短时间内对DC系统引起热量,弧和电气应力损坏。本文提出了一种新型的固态故障电流限制器,可以抑制快捷键电流,并确保断路器正确行动。在正常情况下,限制器作为传输线。但是当发生故障时,它用作降压电路,以控制特定范围内的故障电流。以这种方式,可以减少故障损坏。可以采取实验结果证明限制器。

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