首页> 外文期刊>Latin America Transactions, IEEE (Revista IEEE America Latina) >Fault Current Limiter Placement to Reduce Recloser ‑ Fuse Miscoordination in Electric Distribution Systems with Distributed Generation using Multiobjective Particle Swarm Optimization
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Fault Current Limiter Placement to Reduce Recloser ‑ Fuse Miscoordination in Electric Distribution Systems with Distributed Generation using Multiobjective Particle Swarm Optimization

机译:故障电流限制器的放置,以减少使用多目标粒子群算法的分布式发电配电系统中的重合闸熔断

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摘要

This paper presents a method to minimize protective devices in electric distribution systems with Distributed Generation (DG). With the growing penetration of DG in distribution systems, the main practice to maintain protective devices coordination during a fault is to disconnect all DG sources. This practice nullifies the benefits brought by DG in distribution systems, mainly because the majority of faults are proven to be temporary. To solve this problem, this paper proposes the allocation of fault current limiters (FCL), which consist in inert devices on system's normal operation, but insert a high impedance value in series with feeders when a fault occurs, thus, limiting is magnitude. FCL placement is treated as a multiobjective optimization problem, aiming to reduce fault currents difference between situations with DG and without DG penetration. Also, FCL size must be minimized, aiming to reduce costs. The search for the optimal solution is made using multiobjective particle swarm optimization and the method is tested on the Canadian Benchmark Test System, showing great efficiency.
机译:本文提出了一种在具有分布式发电(DG)的配电系统中最小化保护装置的方法。随着DG在配电系统中的渗透率越来越高,在故障期间保持保护设备协调的主要做法是断开所有DG源。这种做法使DG在配电系统中带来的收益无效,主要是因为事实证明大多数故障都是暂时的。为了解决这个问题,本文提出了故障限流器(FCL)的分配,该限流器包含在系统正常运行的惰性设备中,但是在发生故障时与馈线串联插入一个高阻抗值,因此限制的幅度很大。 FCL放置被视为多目标优化问题,旨在减少有DG和无DG穿透情况之间的故障电流差异。另外,必须减小FCL尺寸,以降低成本。使用多目标粒子群算法进行最优解的搜索,并在加拿大基准测试系统上对该方法进行了测试,显示出很高的效率。

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