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Consensus Design for Heterogeneous Battery Energy Storage Systems with Droop Control Considering Geographical Factor

机译:考虑地理因素,具有下垂控制的异质电池储能系统的共识设计

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摘要

This paper proposes a hierarchical control strategy to coordinate battery energy storage devices based on a multi-agent system. The heterogeneous nature of the battery volume is paid much more attention in designing the proportional protocol of the consensus controller. Besides that, a cluster algorithm based on Minimum Spanning Tree (MST) is suggested to represent geographical factor, and on account of that, each Battery Energy Storage System (BESS) is classified into its specific cluster zone. Further, an active leader is assigned to be in charge of information from the external side in every cluster. The consensus algorithm reconciles all clusters in a step-by-step way. Energy level, voltage, frequency and active/reactive power sharing of every BESS can reach consensus by an information exchange within and among clusters respectively. Further, a virtual leader is taken into the active leader role in directing frequency and voltage to the reference values. To verify the consensus algorithm, a modified IEEE 57-bus is employed for time-domain simulations in an islanded mode and all BESSs are working in a discharge model.
机译:本文提出了一种基于多代理系统的坐标电池能量存储设备的分层控制策略。在设计共识控制器的比例协议时,电池容积的异构性质得到更多重视。除此之外,建议基于最小生成树(MST)的集群算法来表示地理因子,并且由于该电池能量存储系统(BESS)被分类为其特定的集群区域。此外,将主动领导者分配为从每个群集中的外侧负责信息。共识算法以逐步的方式对所有集群进行调和。每个BESS的能级,电压,频率和主动/无功功率共享分别可以分别通过信息交换和中间的信息交换达成共识。此外,虚拟领导者被进入在引导频率和电压到参考值的激活领导者作用中。为了验证共识算法,在岛屿模式下采用改进的IEEE 57总线,并且所有BESS都在放电模型中工作。

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