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Constructing Prosumer Coalitions for Energy Cost Savings Using Cooperative Game Theory

机译:用合作博弈理论构建节能减排的生产者联盟

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Distributed energy storage (ES) is widely regarded as a tool to mitigate the supply-demand imbalance caused by intermittent generations and variable loads in a distribution network. Because a retail supplier generally offers a lower electricity sell price (e.g. feed-in tariff) than its buy price, ES owners are monetarily incentivized to store excess generation for later usage. However, since each ES owner typically optimizes the ES operation based on their individual usage profile, the joint load balancing effect of multiple ES systems becomes insignificant. This paper proposes an energy coalition, in which ES system owners operate collaboratively to minimize the total coalitional energy cost. Using cooperative game theory, the nucleolus and Shapley value are developed as methods to reward players. Finally, selected case studies compare the load balancing effectiveness of noncooperative and cooperative ES operations, and empirically demonstrate the nucleolus's stablizing characteristic, which incentivizes prosumers to stay within the grand coalition.
机译:分布式能源存储(ES)被广泛认为是缓解由间歇性发电和配电网络中的可变负荷引起的供需不平衡的工具。由于零售供应商通常提供的电力销售价格(例如上网电价)比其购买价格低,因此有钱人激励ES所有者存储多余的发电量供以后使用。但是,由于每个ES所有者通常都基于其各自的使用情况来优化ES操作,因此多个ES系统的联合负载平衡效果变得微不足道。本文提出了一个能源联盟,在此联盟中,ES系统所有者进行协作以最大程度地降低联盟能源总成本。利用合作博弈理论,开发了核仁和Shapley值作为奖励玩家的方法。最后,选定的案例研究比较了非合作式和协作式ES运营的负载平衡效果,并通过经验证明了核仁的稳定特性,这激励了消费者留在大联盟中。

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