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Decentralized Control for Residential Energy Management of a Smart Users’ Microgrid with Renewable Energy Exchange

机译:具有可再生能源交换的智能用户微电网住宅能源管理的分散控制

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This paper presents a decentralized control strategy for the scheduling of electrical energy activities of a microgrid composed of smart homes connected to a distributor and exchanging renewable energy produced by individually owned distributed energy resources. The scheduling problem is stated and solved with the aim of reducing the overall energy supply from the grid, by allowing users to exchange the surplus renewable energy and by optimally planning users’ controllable loads. We assume that each smart home can both buy/sell energy from/to the grid taking into account time-varying non-linear pricing signals. Simultaneously, smart homes cooperate and may buy/sell locally harvested renewable energy from/to other smart homes. The resulting optimization problem is formulated as a non-convex non-linear programming problem with a coupling of decision variables in the constraints. The proposed solution is based on a novel heuristic iterative decentralized scheme algorithm that suitably extends the Alternating Direction Method of Multipliers to a non-convex and decentralized setting. We discuss the conditions that guarantee the convergence of the presented algorithm. Finally, the application of the proposed technique to a case study under several scenarios shows its effectiveness.
机译:本文提出了一种分散控制策略,用于调度微电网的电能活动,该微电网包括与配电器相连的智能家居,并交换由个体拥有的分布式能源产生的可再生能源。提出并解决了调度问题,目的是通过允许用户交换剩余的可再生能源并优化规划用户的可控制负荷来减少电网的总体能源供应。我们假设考虑到时变非线性定价信号,每个智能家居都可以从/向电网购买/出售能源。同时,智能家居会合作,并可能从其他智能家居购买/出售本地收获的可再生能源。最终的优化问题被公式化为非凸非线性规划问题,其中决策变量在约束条件下耦合。提出的解决方案基于一种新颖的启发式迭代分散方案算法,该算法将乘法器的交替方向方法适当地扩展到非凸和分散的设置。我们讨论了保证所提出算法收敛的条件。最后,将所提出的技术应用于几种情况下的案例研究表明了其有效性。

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