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A new approach for optimal allocation of multiple SFCLs in a power system with distributed generation

机译:具有分布式发电的电力系统中多个SFCL最优分配的新方法

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Power systems around the world are impacted by increasing penetration of Distributed Generations (DGs), which, in many cases, results in higher fault current levels. In some cases the increased fault current level may exceed the rating of the existing Circuit Breakers (CBs). Since fault current levels are, to a large extend, influenced by the network parameters and topology, which are not easily changed, the usefulness of Fault Current limiters (FCLs) to reduce excessive fault current levels is currently being analyzed by the Power Systems community. Aside analyzing the impact of individual FCLs on fault currents, the optimal placement of multiple FCLs needs to be considered, particularly in a complex large-scale power system. This paper proposed a new algorithm to optimize the locations and sizes of inductive superconducting FCLs installed in a power system. The purpose of this method is to restrain the fault current level under the interrupting rating of the existing CBs by using smallest effective SFCL impedances. By using the proposed method, the efficiency and accuracy of SFCL arrangement computation can be improved.
机译:分布式发电(DG)的普及率对世界各地的电力系统造成了影响,在许多情况下,分布式发电(DG)的普及会导致更高的故障电流水平。在某些情况下,增加的故障电流水平可能会超过现有断路器(CB)的额定值。由于故障电流水平在很大程度上受不易更改的网络参数和拓扑的影响,因此,电源系统社区目前正在分析故障电流限制器(FCL)减少过多故障电流水平的有用性。除了分析单个FCL对故障电流的影响之外,还需要考虑多个FCL的最佳放置,尤其是在复杂的大型电力系统中。本文提出了一种用于优化安装在电力系统中的感应超导FCL的位置和大小的新算法。此方法的目的是通过使用最小的有效SFCL阻抗,将故障电流水平限制在现有CB的中断额定值以下。通过使用所提出的方法,可以提高SFCL排列计算的效率和准确性。

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