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Decentralized monotonicity-based voltage control of DC microgrids with ZIP loads

机译:基于分散的基于单调性的DC微电网电压控制,带拉链负载

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In this paper we propose a monotonicity-based approach for decentralized voltage control of dominantly resistive DC microgrids with ZIP loads. For this purpose, we introduce the notion of set of assignable robust controlled decentralized invariants for the system. Then, upon selection of a desired invariant, an inner decentralized voltage control is designed and a criteria for convergence of the system’s trajectories to an equilibrium point—in presence of constant power loads (CPLs)—is established. Interestingly, a simple realization of the proposed controller corresponds to a piece-wise voltage droop control, the gain of which are determined by the control specifications. A discussion on the selection of appropriate invariants is also carried out and the obtained theoretical results are validated on a 8-terminal benchmark.
机译:本文提出了一种基于单调的基于电压控制的单调性的电阻控制与拉链载荷的分散电压控制。为此目的,我们介绍了系统的可分配强大的控制分散不变的集合概念。然后,在选择所需的不变量时,设计了内部分散的电压控制,并且可以建立恒定功率载荷(CPLS)的平衡点的系统轨迹的收敛标准。有趣的是,所提出的控制器的简单实现对应于一件式电压下垂控制,其增益由控制规范确定。还进行了关于选择适当的不变性的讨论,并在8个终端基准测试中验证了所获得的理论结果。

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