Probabilistic Techno-Economic Optimization in Medium Voltage Distribution Networks with Fault Passage Indicators and Fault Locators

Predrag Mršić, Đorđe Lekić, Bojan Erceg, Č. Zeljković, P. Matić, S. Zubic, P. Balcerek
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Abstract

Fault passage indicators (FPIs) and fault locators (FLs) are employed in modern distribution networks in order to enhance the process of fault localization, thus resulting in reduction of interruption time and improving the reliability of power supply. In this paper, a novel probabilistic techno-economic optimization method is proposed for determining the number and positions of FPIs that lead to maximum reduction of interruptiontime and investment costs in medium voltage (MV) distribution networks with and without FLs. The proposed method is basedon a probabilistic non-sequential Monte Carlo simulation model of the real network, which is a proper compromise between complicated sequential simulation models and too simplified analytical models. The main goal of the method is to obtain maximum improvement of the network reliability indices while using the minimum number of FPIs. The method is tested on a combinedurban/rural MV distribution network in Bosnia and Herzegovina and results are thoroughly discussed.
带故障通道指示器和故障定位器的中压配电网概率技术经济优化
现代配电网采用故障通道指示器(fpi)和故障定位器(fl)来提高故障定位的过程,从而减少中断时间,提高供电的可靠性。本文提出了一种新的概率技术-经济优化方法,用于确定有或无有节能灯的中压配电网中,最大限度地减少中断时间和投资成本的fpi数量和位置。该方法基于实际网络的概率非序列蒙特卡罗仿真模型,在复杂的序列仿真模型和过于简化的解析模型之间取得了较好的折衷。该方法的主要目标是在使用最少的fpi数量的情况下,获得最大的网络可靠性指标的改进。该方法在波黑的一个城乡中压联合配电网上进行了测试,并对结果进行了深入的讨论。
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