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Decentralized voltage control of clustered active distribution network by means of energy storage systems

机译:通过储能系统对集群式有源配电网进行分散电压控制

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摘要

The paper presents a network partitioning strategy for the optimal voltage control of Active Distribution Networks (ADNs) actuated by means of a limited number of Distributed Energy Storage Systems (DESSs). The proposed partitioning uses a linear programming approach by means of the known concept of voltage sensitivities. Then, two decentralized optimal control algorithms are proposed relying, respectively, on the Thevenin equivalents and a recursive approach. These algorithms are developed using the Multi Agent System (MAS) concept. With respect to a centralized control algorithm, the aim of the network clustering is to reduce the number of exchanged messages among the clusters when one of the two proposed decentralized control algorithms is adopted. The effectiveness of the two proposed controls is assessed with respect to the performances of the equivalent centralized control using numerical examples composed by the IEEE 13 and IEEE 123 buses distribution test feeders adapted to include stochastic generation and DESSs. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种网络分区策略,用于通过有限数量的分布式储能系统(DESS)激活的有源配电网(ADN)的最佳电压控制。所提出的划分借助于电压敏感度的已知概念使用线性编程方法。然后,分别提出了两种分散的最优控制算法,分别基于戴维南等效项和递归方法。这些算法是使用多代理系统(MAS)概念开发的。关于集中控制算法,当采用两种提议的分散控制算法之一时,网络集群的目的是减少集群之间交换的消息数量。相对于等效集中控制的性能,使用由适合于包括随机发电和DESS的IEEE 13和IEEE 123总线分布测试馈线组成的数值示例,评估了两个提议的控件的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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