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Optimal Distribution Automation Devices Placement for Reliability Improvement of a Real Distribution Network with Sub-Feeders Considering Customer Interruption Cost

机译:考虑客户中断成本的副进纸器的实际分配网络可靠性改进的最佳分布自动化设备

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This paper presents predictive analytical and simulation approaches to reliability worth/cost assessments conducted on a test system and a typical Cape Town real system. Feeder 3 of bus 6 of the RBTS was utilized to illustrate various cases of switch configurations and for each arrangement the reliability indices were evaluated analytically as well as in Monte Carlo Simulation and results found to be similar. In this paper three scenarios were investigated in the Waterkloof Farmers-1 11 kV network (real system); Reliability assessment was firstly performed without automation devices (Scenario 1), secondly with automation devices in the current or existing positions (Scenario 2) and lastly, with optimal placement of the automation devices on the feeder using analytical and evolutionary algorithms methodologies (Scenario 3). The objective function behind placement can either be based on SAIDI or the ECOST and the best switch position for SAIDI might be worst position for the ECOST.
机译:本文介绍了在测试系统和典型的开普敦实际系统上进行的可靠性/成本评估的可靠性和模拟方法。利用RBT的总线6的进料器3来说明各种情况的开关配置,并且对于每个布置,可靠性指数被分析评估,以及在蒙特卡罗模拟中,发现类似的结果。本文在水库农民-1 11 kV网络(真实系统)中调查了三种情景;首先在没有自动化设备(场景1)的情况下进行可靠性评估,其次是当前或现有位置(方案2)中的自动化设备(方案2),最后,使用分析和进化算法方法(方案3),自动化设备的最佳放置在馈线上(方案3) 。放置背后的目标函数可以基于SEDI或ECOST和ECOST,并且LEDI的最佳开关位置可能是ECOST的最差位置。

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