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Autonomous Household Energy Management Based on a Double Cooperative Game Approach in the Smart Grid

机译:智能电网中基于双重合作博弈的家庭自主能源管理

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Taking advantage of two-way communication infrastructure and bidirectional energy trading between utility companies and customers in the future smart grid (SG), autonomous energy management programs become crucial to the demand-side management (DSM). Most of the existing autonomous energy management schemes are for the scenario with a single utility company or the scenario with one-way energy trading. In this paper, an autonomous household energy management system with multiple utility companies and multiple residential customers is studied by considering the bidirectional energy trading. To minimize the overall costs of both the utility companies and the residential customers, the energy management system is formulated as a double cooperative game. That is, the interaction among the residential users is formulated as a cooperative game, where the players are the customers and the strategies are the daily schedules of their household appliances; and the interaction among the utility companies is also formulated as a cooperative game, where the players are the suppliers and the strategies are the proportions of the daily total energy they provide for the customers. Without loss of generality, the bidirectional energy trading in the double cooperative game is formulated by allowing plug-in electric vehicles (PEVs) to discharge and sell energy back. Two distributed algorithms will be provided to realize the global optimal performance in terms of minimizing the energy costs, which can be guaranteed at the Nash equilibriums of the formulated cooperative games. Finally, simulation results illustrated that the proposed double cooperative game can benefit both the utility companies and residential users significantly.
机译:在未来的智能电网(SG)中,利用公用事业公司与客户之间的双向通信基础结构和双向能源交易,自主能源管理计划对于需求侧管理(DSM)至关重要。现有的大多数自主能源管理方案大多数是针对一家公用事业公司的方案或针对单向能源交易的方案。在本文中,通过考虑双向能源交易,研究了具有多个公用事业公司和多个居民用户的自治家庭能源管理系统。为了使公用事业公司和居民用户的总成本最小化,能源管理系统被制定为双重合作博弈。也就是说,居民用户之间的互动被表述为一个合作游戏,其中玩家是顾客,策略是他们家用电器的日程安排。公用事业公司之间的互动也被表述为合作博弈,其中参与者是供应商,策略是他们为客户提供的每日总能量的比例。在不失一般性的前提下,双重合作博弈中的双向能源交易是通过允许插入式电动汽车(PEV)排放并售回能源来制定的。将提供两种分布式算法,以在使能源成本最小化方面实现全局最佳性能,这可以在制定的合作博弈的纳什均衡下得到保证。最后,仿真结果表明,所提出的双重合作博弈可以使公用事业公司和居民用户受益。

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