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A canonical coalitional game theoretic approach for energy management for nanogrids

机译:一种规范的联盟博弈理论方法,用于纳米网格的能量管理

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This paper explores the benefits of forming a coalition of a number of nanogrids in a smart community when they assist by supplying their energy surplus to a shared facility controller (SFC). In this context, a canonical coalition game (CCG) is studied, in which a number of nanogrids, such as households, form a grand coalition in order to supply a contracted amount of energy to the SFC with a view to gain some revenue. A suitable utility function is proposed that captures the benefit to the coalition of trading the energy with the SFC, as well as the penalty that may occur if the coalition fails to provide the SFC with the contracted energy amount. The properties of the coalition are studied and a fair utility allocation technique, i.e., a proportional payoff division scheme, is exploited for distributing the benefits between the participating nanogrids based on the supply they contribute.
机译:本文探讨了在智能社区中由许多纳米电网组成联盟的好处,这些联盟通过向共享设施控制器(SFC)提供多余的能源来提供协助。在这种情况下,研究了一种规范的联盟游戏(CCG),其中许多纳米电网(例如家庭)组成了一个庞大的联盟,以便向证监会供应合同规定的能源量,以期获得一定的收入。提出了一种合适的效用函数,该函数可以获取联盟与SFC进行能源交易的好处,以及在联盟未能向SFC提供合同能源量的情况下可能产生的损失。研究了联盟的性质,并利用公平的效用分配技术(即比例收益分配方案),根据参与的纳米电网的贡献在利益之间分配利益。

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