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A motivational game-theoretic approach for peer-to-peer energy trading in the smart grid

机译:智能电网对等能源交易的动机游戏理论方法

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摘要

Peer-to-peer trading in energy networks is expected to be exclusively conducted by the prosumers of the network with negligible influence from the grid. This raises the critical question: how can enough prosumers be encouraged to participate in peer-to-peer trading so as to make its operation sustainable and beneficial to the overall electricity network? To this end, this paper proposes how a motivational psychology framework can be used effectively to design peer-to-peer energy trading to increase user participation. To do so, first, the state-of-the-art of peer-to peer energy trading literature is discussed by following a systematic classification, and gaps in existing studies are identified. Second, a motivation psychology framework is introduced, which consists of a number of motivational models that a prosumer needs to satisfy before being convinced to participate in energy trading. Third, a game-theoretic peer-to-peer energy trading scheme is developed, its relevant properties are studied, and it is shown that the coalition among different prosumers is a stable coalition. Fourth, through numerical case studies, it is shown that the proposed model can reduce carbon emissions by 18.38% and 9.82% in a single day in Summer and Winter respectively compared to a feed-in-tariff scheme. The proposed scheme is also shown to reduce the cost of energy up to 118 phi and 87 phi per day in Summer and Winter respectively. Finally, how the outcomes of the scheme satisfy all the motivational psychology models is discussed, which subsequently shows its potential to attract users to participate in energy trading.
机译:能源网络中的同行对等交易预计将被网络的质量专门进行,从网格的影响忽略不计。这提出了关键问题:鼓励如何鼓励足够的制度参加同行交易,以使其运作可持续和有利于整体电网?为此,本文提出了如何有效地使用励志心理框架来设计对等能源交易以增加用户参与。为此,首先,通过遵循系统的分类,讨论了对等能源交易文献的最先进的对等能源交易文献,并确定了现有研究中的差距。其次,介绍了动机心理框架,这包括许多动机模型,在确信参与能源交易之前,可以提高法制案。第三,开发了一种游戏理论对等能源交易方案,研究了其相关性质,并显示出不同法制的联盟是一个稳定的联盟。第四,通过数值案例研究,表明,拟议的模型可以在夏季和冬季的一天中减少18.38%和9.82%的碳排放量,分别与送入关税计划相比。拟议的计划也显示出在夏季和冬季每天每天高达118 PHI和87柱的能量成本。最后,讨论了该方案的结果如何满足所有动机心理学模型,随后显示其吸引用户参与能源交易的潜力。

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