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Event-Based Distributed Active Power Sharing Control for Interconnected AC and DC Microgrids

机译:交流和直流微电网互联的基于事件的分布式有功功率共享控制

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This paper investigates the issue of active power sharing among a cluster of microgrids formed by a set of ac and dc microgrids network-interconnected through a set of interlinking converters (ICs). An event-based distributed consensus control approach is proposed to address this issue, in which each IC is assigned to be an agent that needs only the information of its local and neighboring ICs. We first construct the agent system for each IC and design its consensus control protocol. This control mechanism uses a cooperative approach to indirectly adjust the active power load of individual microgrid and, accordingly, navigate the active power flow among them. Thus active power sharing among the interconnected microgrids can be achieved proportionally. Then, an event-based control scheme is utilized to design the consensus protocol, which can dramatically reduce the communication between ICs. Communication time delays and reactive power support are also considered. The proposed distributed control method allows a sparse communication structure and higher reliability and flexibility operation. Simulation results are presented to demonstrate the proposed control method.
机译:本文研究由一组交流和直流微电网通过一组互连转换器(IC)互连形成的微电网集群之间的有功功率共享问题。为了解决这个问题,提出了一种基于事件的分布式共识控制方法,其中将每个IC分配为仅需要其本地和相邻IC信息的代理。我们首先为每个IC构建代理系统,并设计其共识控制协议。该控制机制使用协作方法间接调整单个微电网的有功功率负载,并因此在它们之间导航有功功率流。因此,可以成比例地实现互连的微电网之间的有功功率共享。然后,基于事件的控制方案被用于设计共识协议,这可以大大减少IC之间的通信。还考虑了通信时间延迟和无功功率支持。所提出的分布式控制方法允许稀疏的通信结构以及更高的可靠性和灵活性操作。仿真结果表明了所提出的控制方法。

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