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Analysis of consensus-based active power sharing with respect to network topology in islanded microgrids

机译:关于岛状微电网网络拓扑共识的基于共识的积极权力分析

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A key objective to be fulfilled by distributed voltage source inverters working in parallel in islanded MicroGrids (MGs) is to ensure active power sharing while keeping the frequency at a desired setpoint. Recently, consensus-based control techniques have been applied at the secondary control level for active power sharing while correcting the frequency deviation that the droop control implemented at the primary control level introduces. To this end, inverters work in a cooperative way by sharing their own corrective action with their neighbors over a digital communication network. The contribution of this paper is to analyze how changes in the network topology affect the consensus-based active power sharing control goal. In particular, the analysis focuses on the network structure in terms of adjacency, that is, in terms of the number of connections that each node has. The theoretical analysis based on graph theory provides results that indicate the pattern that steady-state active power values will follow according to the network structure. Numerical examples are used to illustrate the theoretical results, and select simulations on a low-scale MG complete the analysis. The paper results provide insight into the existing design tradeoff between power sharing accuracy and number of network connections.
机译:一个关键的目标是通过平行于微网岛状(MGS)的工作电压分布源逆变器被满足是确保活性功率共享,同时保持频率在所希望的设定点。最近,基于共识的控制技术已在有源功率共享次级控制电平,而校正频率偏差,所述下垂控制在主控制电平介绍实现应用。为此,逆变器通过与他们的邻居在数字通信网络分享自己的纠正措施以合作的方式工作。本文的贡献是分析网络拓扑的变化如何影响基于共识的有功功率共享控制目标。特别地,分析集中在网络结构中邻接的方面,即,在连接的数量,每个节点具有的条款。基于图论的理论分析提供的结果表明,稳态有功功率值将根据网络结构遵循的模式。数值例子用来说明了理论结果,并选择在低尺度MG模拟完成分析。本文结果提供深入了解功率共享准确性和网络连接的数目之间的现有的设计折衷。

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