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A Decentralized Control Strategy for the Energy Management of Smart Homes with Renewable Energy Exchange

机译:可再生能源交换智能家居能源管理的分散控制策略

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This paper presents a decentralized control strategy for the scheduling of energy activities of interconnected smart homes that purchase energy from a supplier while exchanging renewable energy produced by individually owned distributed energy resources. The scheduling problem is solved with a twofold design objective. First, the model aims at reducing the overall energy supply from the grid, by allowing users to borrow/lend some amount of renewable energy from/to other users. Second, the problem is formulated to optimally plan users' controllable loads. We assume a time-varying quadratic pricing of the energy purchased from the distribution network. The proposed solution is based on a decentralized optimization algorithm combining parametric optimization with the proximal Jacobian Alternating Direction Method of Multipliers. The application of the proposed technique to a simulated case study under several scenarios shows its effectiveness.
机译:本文提出了分散的控制策略,用于调度互联智能家庭的能源活动,这些智能家庭从供应商购买能源,同时交换单独拥有的分布能源生产的可再生能源。调度问题以双重设计目标解决了。首先,该模型旨在通过允许用户借用/借给其他用户的可再生能源来减少网格的整体能源供应。其次,问题被配制为最佳地规划用户可控负载。我们假设从分销网络购买的能量的时变二次定价。所提出的解决方案基于分散的优化算法,将参数优化与乘法器的近端雅各比交替方向方法相结合。提出的技术在若干情景下将技术应用于模拟案例研究表明了其有效性。

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