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Dual Energy Scheduling for Microgrids in Energy Internet: A Non-Cooperative Game Approach

机译:能源互联网中微电网的双重能源调度:一种非合作博弈方法

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In the future Energy Internet, one of the challenging problems faced by microgrids will be the multiple energy management including outer energy exchange and inner energy schedule. This paper proposes a game theory based dual energy scheduling method for microgrids in Energy Internet. The dual energy scheduling problem is formulated as a non-cooperative game, where household users within a microgrid schedule electricity and gas usages to minimize their total energy costs. The energy router in the microgrid is responsible for providing users with information that is needed in the game process, and executing multi-energy control according to the game results. The existence and uniqueness of Nash equilibrium for the proposed game model are discussed, and an iterative algorithm for reaching the equilibrium is presented. Simulation results show that the proposed game-based approach can effectively reduce both electricity and gas consumption costs of household users in a microgrid.
机译:在未来的能源互联网中,微电网面临的挑战性问题之一将是多重能源管理,包括外部能源交换和内部能源计划。本文提出了一种基于博弈论的能源互联网微电网双重能源调度方法。双重能源调度问题被表述为非合作博弈,其中微电网中的家庭用户调度电力和天然气使用量,以最大程度地降低其总能源成本。微电网中的能量路由器负责向用户提供游戏过程中所需的信息,并根据游戏结果执行多能量控制。讨论了所提出的博弈模型的纳什均衡的存在性和唯一性,并提出了达到均衡的迭代算法。仿真结果表明,所提出的基于游戏的方法可以有效地降低微电网中家庭用户的电力和燃气消耗成本。

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