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Contribution-Based Energy-Trading Mechanism in Microgrids for Future Smart Grid: A Game Theoretic Approach

机译:微电网中基于贡献的未来智能电网能源交易机制:一种博弈论方法

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摘要

This paper designs a contribution-based energy-trading mechanism among microgrids in a competitive market. In each fixed time interval, each microgrid can be an energy provider or a consumer according to their energy generation and local demand. Under the trading mechanism, there is a distributor which gathers the surplus energy from providers and distributes it to the consumers based on the consumers’ historical contribution level. To design the trading mechanism, a novel contribution-based energy allocation policy (EAP) is proposed. Each consumer who knows this distribution rule decides the amount of requesting energy in order to maximize its utility, i.e., the quantity of energy it will receive. Finally, the economic benefits of such trading mechanism are studied by analyzing the decision-making procedures of consumers and distributor. The problem is formulated as a noncooperative energy competition game (ECG) among the consumers. The existence and the uniqueness of Nash equilibrium (NE) are shown, and the NE solution is given as a closed form. Also, even though there are foolish consumers which do not take the given NE solution, a consumer which takes the NE solution will not lose out on its utility. The proposed energy-trading mechanism is stable enough to be applied to a practical microgrid trading market.
机译:本文设计了竞争市场中微电网之间基于贡献的能量交易机制。在每个固定的时间间隔中,每个微电网可以根据其能量产生和本地需求而成为能量提供者或消费者。在交易机制下,有一个分销商,从供应商那里收集剩余能源,并根据消费者的历史贡献水平将其分配给消费者。为了设计交易机制,提出了一种新颖的基于贡献的能源分配政策(EAP)。知道该分配规则的每个消费者都决定请求能量的数量,以便最大化其效用,即它将接收的能量数量。最后,通过分析消费者和分销商的决策程序,研究了这种交易机制的经济利益。该问题被表述为消费者之间的非合作能源竞争博弈(ECG)。给出了纳什均衡(NE)的存在性和唯一性,并以封闭形式给出了NE解。而且,即使有些愚蠢的消费者没有采用给定的NE解决方案,采用NE解决方案的消费者也不会失去其效用。所提出的能量交易机制足够稳定,可以应用于实际的微电网交易市场。

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