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Three-Party Energy Management With Distributed Energy Resources in Smart Grid

机译:智能电网中分布式能源的三方能源管理

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摘要

In this paper, the benefits of distributed energy resources are considered in an energy management scheme for a smart community consisting of a large number of residential units (RUs) and a shared facility controller (SFC). A noncooperative Stackelberg game between the RUs and the SFC is proposed in order to explore how both entities can benefit, in terms of achieved utility and minimizing total cost respectively, from their energy trading with each other and the grid. From the properties of the game, it is shown that the maximum benefit to the SFC, in terms of reduction in total cost, is obtained at the unique and strategy-proof Stackelberg equilibrium (SE). It is further shown that the SE is guaranteed to be reached by the SFC and RUs by executing the proposed algorithm in a distributed fashion, where participating RUs comply with their best strategies in response to the action chosen by the SFC. In addition, a charging–discharging scheme is introduced for the SFC's storage device that can further lower the SFC's total cost if the proposed game is implemented. Numerical experiments confirm the effectiveness of the proposed scheme.
机译:在本文中,在由大量居民单元(RU)和共享设施控制器(SFC)组成的智能社区的能源管理方案中,考虑了分布式能源的优势。提出了RU和SFC之间的非合作Stackelberg博弈,以探讨两个实体如何分别从彼此之间以及与电网之间的能源交易中实现收益和最小化总成本。从游戏的性质来看,在减少总成本方面,证监会的最大利益是在独特且具有策略证明意义的斯塔克尔伯格均衡(SE)下获得的。进一步表明,通过以分布式方式执行所提出的算法,可以保证SFC和RU达到SE,其中参与的RU响应SFC选择的动作而遵循其最佳策略。此外,为证监会的存储设备引入了一种充放电方案,如果实施了建议的游戏,则可以进一步降低证监会的总成本。数值实验证实了该方案的有效性。

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