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Balancing collective and individual interests in transactive energy management of interconnected micro-grid clusters

机译:在互联微电网集群的无功能源管理中平衡集体利益和个人利益

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摘要

The emerging technology, transactive energy network, can allow multiple interconnected micro-grids (a.k.a. micro-grid clusters) to exchange energy for greater energy efficiency. Existing research has demonstrated that the micro-grid clusters can achieve some collective interests (e.g., minimizing total energy cost). However, some micro-grids may have to make sacrifices of their individual interests (e.g., increasing cost) for collective interests of the clusters. To bridge these research gaps, we propose four different transactive energy management models for micro-grid clusters where each micro-grid is allowed to have energy transactions with others. The first model focuses on maximizing collective interests, both the collective and individual interests are considered in the second model, and the last two models aim to maximize both the collective and individual interests. The performances of the proposed models are evaluated using a cluster of sixteen micro-grids with different energy profiles. It is demonstrated that 1) all of the four models can maximize the collective interests, 2) the third model can maximize the relative individual interests where each micro-grid can achieve the same percentage of cost savings as the clusters, and 3) the fourth model can maximize the absolute individual interests where each micro-grid can achieve the same amount of cost savings. (C) 2016 Elsevier Ltd. All rights reserved.
机译:新兴技术,交互式能源网络,可以允许多个相互连接的微电网(也称为微电网集群)交换能量以提高能源效率。现有研究表明,微电网集群可以实现某些集体利益(例如,使总能源成本最小化)。但是,某些微电网可能不得不牺牲自己的个人利益(例如,增加成本)以实现集群的集体利益。为了弥合这些研究差距,我们针对微电网集群提出了四种不同的交互式能源管理模型,其中每个微电网都可以与其他微电网进行能源交易。第一个模型侧重于最大化集体利益,第二个模型中考虑了集体利益和个人利益,而后两个模型旨在最大化集体利益和个人利益。使用具有不同能量分布的16个微电网集群评估了所提出模型的性能。证明了:1)这四个模型都可以使集体利益最大化; 2)第三个模型可以使相对个体利益最大化,其中每个微电网可以实现与集群相同的成本节省百分比; 3)第四个模型该模型可以最大程度地提高个人的绝对利益,其中每个微电网都可以实现相同数量的成本节省。 (C)2016 Elsevier Ltd.保留所有权利。

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