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Optimal location assignment and design of superconducting fault current limiters applied to loop power systems

机译:应用于回路电力系统的超导故障限流器的最佳位置分配与设计

摘要

Short-circuit current is strongly related to the cost of apparatus and the efficient use of power transmissions. Therefore, the introduction of Superconducting Fault Current Limiters (SFCLu27s) becomes an effective way for suppressing such a high short-circuit current in loop power systems. Firstly, a method to obtain a smaller SFCL capacity by observing the SFCL behavior including sub-transient and transient effects during a short circuit is proposed. Secondly, we propose using a micro-genetic algorithm (micro-GA) combined with a hierarchical genetic algorithm (HGA) to simultaneously search for the optimal location and the smallest SFCL capacity. The efficiency of the proposed method is shown by numerical examples with a loop power system.
机译:短路电流与设备成本和功率传输的有效使用密切相关。因此,引入超导故障限流器(SFCL u27s)成为抑制环路电力系统中如此高的短路电流的有效方法。首先,提出了一种通过观察包括短路期间的子瞬态和瞬态效应在内的SFCL行为来获得较小的SFCL容量的方法。其次,我们建议使用微遗传算法(micro-GA)与分层遗传算法(HGA)相结合,以同时搜索最佳位置和最小的SFCL容量。带有回路电源系统的数值示例显示了该方法的效率。

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