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A two stage fault current limiter and directional overcurrent relay optimization for adaptive protection resetting using differential evolution multi-objective algorithm in presence of distributed generation

机译:一种双级故障电流限制器和定向过电力继电器优化,用于在分布生成存在下使用差分展开多目标算法复位的自适应保护

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This paper presents a two stage optimization approach for solving the excessive network fault currents and resetting of overcurrent relays based on Adaptive Protection Scheme (APS) concept. The first stage consists of Fault Current Limiter (FCL) optimization to restore fault currents within Circuit Breaker (CB) thermal capacity whether caused by Distributed Generation (DG) or not. The second stage consists of Directional Overcurrent Relay (DOCR) coordination based on the adaptive protection concept to reset DOCR in order to function properly in presence of FCL and DG. This is of great importance since FCL may cause over limitation of fault current during minimum load operation which may degrade DOCR performance. The optimization process has been achieved by formulating both the FCL sizing and location problem and DOCR coordination problem using Differential Evolution Multi-Objective (DEMO) algorithm. The proposal has effectively re-coordinated the DOCRs contemplating the effects of FCLs and DGs which mitigated the faults surpassing CB thermal limit, DOCR miscoordination and degraded performance caused by FCL over limitation.
机译:本文介绍了一种两级优化方法,用于基于自适应保护方案(APS)概念解决过多网络故障电流和重置过流继电器的复位。第一阶段由故障电流限制器(FCL)优化组成,以恢复断路器内的故障电流(CB)热容量,无论是由分布式发电(DG)引起的。第二阶段包括基于自适应保护概念的定向过电流继电器(DOCR)协调来重置DOCR,以便在FCL和DG的存在下正常运行。这具有重要的重要性,因为FCL可能导致最小负载操作期间的故障电流限制可能降低DOCR性能。通过使用差分演进多目标(演示)算法制定FCL尺寸和位置问题和DOCR协调问题,实现了优化过程。该提案有效地重新协调了考虑FCLS和DG的效果的DOCRS,这些斗争减少了超越CB热限的故障,DOCR误差和由FCL引起的降低的性能。

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