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Optimal positioning of storage systems in microgrids based on complex networks centrality measures

机译:基于复杂网络集中度度量的微电网存储系统优化定位

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摘要

We propose a criterion based on complex networks centrality metrics to identify the optimal position of Energy Storage Systems in power networks. To this aim we study the relation between centrality metrics and voltage fluctuations in power grids in presence of high penetration of renewable energy sources and storage systems. For testing purposes we consider two prototypical IEEE networks and we compute the correlation between node centrality (namely Eigenvector, Closeness, Pagerank, Betweenness) and voltage fluctuations in presence of intermittent renewable energy generators and intermittent loads measured from domestic users. We show that the topological characteristics of the power networks are able to identify the optimal positioning of active and reactive power compensators (such as energy storage systems) used to reduce voltage fluctuations according to the common quality of service standards. Results show that, among the different metrics, eigenvector centrality shows a statistically significant exponential correlation with the reduction of voltage fluctuations. This finding confirms the technical know-how for which storage systems are heuristically positioned far from supply reactive nodes. This also represents an advantage both in terms of computational time, and in terms of planning of wide resilient networks, where a careful positioning of storage systems is needed, especially in a scenario of interconnected microgrids where intermittent distributed energy sources (such as wind or solar) are fully deployed.
机译:我们提出了一种基于复杂网络中心度指标的标准,以识别储能系统在电力网络中的最佳位置。为此,我们研究了在可再生能源和存储系统渗透率很高的情况下,电网中心度指标与电压波动之间的关系。为了进行测试,我们考虑了两个原型IEEE网络,并计算了节点中心性(即特征向量,紧密度,Pagerank,中间度)与存在间歇性可再生能源产生器和间歇性负荷的电压波动之间的相关性。我们表明,电力网络的拓扑特性能够根据通用的服务质量标准,确定用于减少电压波动的有功和无功功率补偿器(例如能量存储系统)的最佳位置。结果表明,在不同的度量标准中,特征向量中心性与电压波动的减小具有统计上显着的指数相关性。这一发现证实了启发式定位的存储系统的技术知识,使其远离供应电抗节点。这在计算时间和宽泛的弹性网络规划方面也都代表着优势,在这种情况下,需要仔细定位存储系统,尤其是在互连的微电网中,间歇性分布式能源(例如风能或太阳能) )完全部署。

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