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Multiagent-Based Distributed State of Charge Balancing Control for Distributed Energy Storage Units in AC Microgrids

机译:交流微电网中分布式能量存储单元的基于Multiagent的分布式充电状态平衡控制

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摘要

In this paper, a multiagent-based distributed control algorithm has been proposed to achieve state of charge (SoC) balance of distributed energy storage (DES) units in an ac microgrid. The proposal uses frequency scheduling instead of adaptive droop gain to regulate the active power. Each DES unit is taken as an agent and it schedules its own frequency reference given of the real power droop controller according to the SoC values of all other DES units. Further, to obtain the average SoC value of DES, the dynamic average consensus algorithm is utilized by each agent. A generalized small-signal model of the proposed frequency scheduling for the proposed frequency scheduling is developed in order to verify the stability of the control system and to guide control parameters design. The convergence characteristics for the dynamic consensus adopted in the multiagent system are also analyzed to choose the proper control parameter. Experimental results verified the effectiveness, the robustness against communication topology changes, and capability of “plug & play” for the proposed multiagent system through different case studies.
机译:本文提出了一种基于多代理的分布式控制算法,以实现交流微电网中分布式能量存储(DES)单元的荷电状态(SoC)平衡。该提案使用频率调度而不是自适应下垂增益来调节有功功率。每个DES单元均作为代理,并根据所有其他DES单元的SoC值调度其自己的有功功率下降控制器给定的频率参考。此外,为了获得DES的平均SoC值,每个代理程序都使用动态平均共识算法。为了验证控制系统的稳定性并指导控制参数的设计,建立了针对所提出的频率调度的所提出的频率调度的广义小信号模型。分析了多智能体系统中采用的动态共识的收敛特性,以选择合适的控制参数。实验结果通过不同的案例研究验证了所提出的多代理系统的有效性,针对通信拓扑变化的鲁棒性以及“即插即用”的能力。

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