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Placement of Remote-Controlled Switches to Enhance Distribution System Restoration Capability

机译:放置遥控开关以增强配电系统的恢复能力

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A smart distribution system should restore service to interrupted customers as quickly as possible after an outage. Upgrading manual switches to remote-controlled switches (RCSs) enhances restoration capability. The placement of RCSs should consider both functional and economic requirements. This paper presents a systematic method to determine the set of switches to be upgraded for an existing distribution system. The maximum restoration capability is achieved by upgrading a near-minimum number of manual switches to RCSs. The RCS placement problem is formulated as a weighed set cover (WSC) problem. A greedy algorithm with a polynomial-time computational efficiency is designed to generate a near-optimal solution for the WSC problem. A 3-feeder 9-node test system and a 4-feeder 1069-node unbalanced test system with microgrids are used to validate the effectiveness of the proposed method.
机译:智能配电系统应在中断后尽快恢复对中断客户的服务。将手动开关升级为远程控制开关(RCS)可增强恢复能力。 RCS的放置应同时考虑功能和经济要求。本文提出了一种系统的方法来确定要为现有配电系统升级的交换机集。通过将最少数量的手动开关升级到RCS,可以实现最大的恢复能力。 RCS放置问题公式化为称重机套(WSC)问题。设计了具有多项式时间计算效率的贪婪算法,以生成针对WSC问题的近似最优解。带有微网的3馈线9节点测试系统和4馈线1069节点不平衡测试系统用于验证所提出方法的有效性。

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