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HV distribution network optimum supply restoration algorithm

机译:高压配电网最优供电恢复算法

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In this paper, an algorithm is proposed to investigate the improvement in HV network reliability when the number and location of Remotely Operable Switches (ROS) is changed. Specifically, the Particle Swarm Optimisation PSO is employed to identify; (i) optimal placement of remotely operable protective devices and (ii) the optimal sequence of reconfiguration and restoration of the supply based on a given deployed set of switches. The reliability of the network is measured by calculating the possible number of customers restored post outage, considering both upstream and downstream restorations. In the selection of optimal switching sequences, the voltage and current constraints are also used to ensure that the identified restoration is viable. A successfully developed PSO based algorithm is described and applied to an 11 kV urban distribution network comprising 162 nodes and 31 feeders. Successful results were achieved with optimal number of ROS and reconfigurations have been made without voltage or current violation.
机译:本文提出了一种算法,研究了当可远程操作的开关(ROS)的数量和位置发生变化时,高压网络可靠性的提高。具体来说,采用粒子群优化PSO进行识别; (i)可远程操作的保护装置的最佳放置,以及(ii)基于给定的一组已部署开关,重新配置和恢复电源的最佳顺序。网络的可靠性是通过考虑上游和下游恢复,通过计算停机后恢复的客户数量来衡量的。在选择最佳开关顺序时,还使用电压和电流约束来确保所确定的恢复可行。描述了一种成功开发的基于PSO的算法,并将其应用于包含162个节点和31个馈线的11 kV城市配电网络。使用最佳数量的ROS可获得成功的结果,并且在不违反电压或电流的前提下进行了重新配置。

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