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A Game Theoretic Optimization Framework for Home Demand Management Incorporating Local Energy Resources

机译:结合本地能源的家庭需求管理的博弈论优化框架

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Facilitated by advanced information and communication technologies (ICT) infrastructure and optimization techniques, smart grid has the potential to bring significant benefits to the energy consumption management. This paper presents a game theoretic consumption scheduling framework based on the use of mixed integer programming (MIP) to schedule consumption plan for residential consumers. In particular, the optimization framework incorporates integration of locally generated renewable energy in order to minimize dependency on conventional energy and the consumption cost. The game theoretic model is designed to coordinatively manage the scheduling of appliances of consumers. The Nash equilibrium of the game exists and the scheduling optimization converges to an equilibrium where all consumers can benefit from participating in. Simulation results are presented to demonstrate the proposed approach and the benefits of home demand management.
机译:在先进的信息和通信技术(ICT)基础设施和优化技术的推动下,智能电网有可能为能源消耗管理带来重大利益。本文提出了一种基于混合整数规划(MIP)的居民住宅消费计划的博弈理论消费计划框架。特别是,优化框架结合了本地产生的可再生能源的整合,以最大程度地减少对常规能源和消耗成本的依赖。博弈论模型旨在协调管理消费者设备的调度。存在游戏的纳什均衡,并且调度优化收敛到所有消费者都可以从中受益的均衡。仿真结果表明了所提出的方法和家庭需求管理的好处。

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