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Networked and distributed control method with optimal power dispatch for islanded microgrids

机译:用于孤岛微网的最优功率调度的网络化和分布式控制方法

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摘要

In this paper, a two-layer network and distributed control method is proposed, where there is a top-layer communication network over a bottom-layer microgrid. The communication network consists of two subgraphs, in which the first is composed of all agents, while the second is only composed of controllable agents. The distributed control laws derived from the first subgraph guarantee the supply–demand balance, while further control laws from the second subgraph reassign the outputs of controllable distributed generators, which ensure active and reactive power are dispatched optimally. However, for reducing the number of edges in the second subgraph, generally a simpler graph instead of a fully connected graph is adopted. In this case, a near-optimal dispatch of active and reactive power can be obtained gradually, only if controllable agents on the second subgraph calculate set points iteratively according to our proposition. Finally, the method is evaluated over seven cases via simulation. The results show that the system performs as desired, even if environmental conditions and load demand fluctuate significantly. In summary, the method can rapidly respond to fluctuations resulting in optimal power sharing.
机译:本文提出了一种两层网络和分布式控制方法,即在底层微电网上存在一个顶层通信网络。通信网络由两个子图组成,其中第一个子图由所有代理组成,而第二个子图仅由可控代理组成。从第一个子图得出的分布式控制律可保证供需平衡,而从第二个子图得到的进一步控制律可重新分配可控分布式发电机的输出,从而确保有功和无功功率得到最佳分配。但是,为了减少第二个子图中的边数,通常采用更简单的图代替完全连接的图。在这种情况下,只有第二个子图上的可控代理根据我们的命题迭代地计算设定点时,才可以逐渐获得有功和无功功率的最佳分配。最后,通过仿真评估了该方法的七种情况。结果表明,即使环境条件和负载需求大幅波动,该系统也可以按预期运行。总之,该方法可以快速响应波动,从而实现最佳的功率共享。

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