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Smart transactive energy framework in grid-connected multiple home microgrids under independent and coalition operations

机译:独立和联盟运营下的并网多个家庭微电网中的智能交易能源框架

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This paper presents a smart Transactive energy (TE) framework in which home microgrids (H-MGs) can collaborate with each other in a multiple H-MG system by forming coalitions for gaining competitiveness in the market. Profit allocation due to coalition between H-MGs is an important issue for ensuring the optimal use of installed resources in the whole multiple H-MG system. In addition, considering demand fluctuations, energy production based on renewable resources in the multiple H-MG can be accomplished by demand-side management strategies that try to establish mechanisms to allow for a flatter demand curve. In this regard, demand shifting potential can be tapped through shifting certain amounts of energy demand from some time periods to others with lower expected demand, typically to match price values and to ensure that existing generation will be economically sufficient. It is also possible to obtain the maximum profit with the coalition formation. In essence the impact of the consumption shifting in the multiple H-MG schedule can be considered while conducting both individual and coalition operations. A comprehensive simulation study is carried out to reveal the effectiveness of the proposed method in lowering the market clearing price (MCP) for about 15% of the time intervals, increasing H-MG responsive load consumption by a factor of 30%, and promoting local generation by a factor of three. The numerical results also show the capability of the proposed algorithm to encourage market participation and improve profit for all participants. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一个智能的Transactive Energy(TE)框架,在该框架中,家用微电网(H-MG)可以通过组建联盟以在市场上获得竞争优势而在多个H-MG系统中相互协作。 H-MG之间联盟带来的利润分配是确保在整个多个H-MG系统中最佳利用已安装资源的重要问题。此外,考虑到需求波动,可以通过需求方管理策略来实现基于多个H-MG中可再生资源的能源生产,这些策略试图建立允许需求曲线平坦的机制。在这方面,可以通过将一定数量的能源需求从某些时间段转移到预期需求较低的其他时间段来挖掘需求转移潜力,通常是为了与价格值匹配并确保现有发电量在经济上足够。随着联盟的形成,也有可能获得最大的利益。从本质上讲,在进行个人和联合作战时,可以考虑多个H-MG计划中的消耗转移的影响。进行了全面的模拟研究,揭示了该方法在降低大约15%的时间间隔内的市场清算价格(MCP),将H-MG响应负载消耗增加30%以及促进本地化方面的有效性。产生三倍。数值结果还显示了所提出算法鼓励市场参与者并为所有参与者提高利润的能力。 (C)2018 Elsevier Ltd.保留所有权利。

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