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Coalition formation strategies for cooperative operation of multiple microgrids

机译:多个微电网协同运行的联盟形成策略

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Energy cooperation among microgrids (MGs) by enabling local energy exchanges among them, is an appealing new solution to cope up with the impending energy crises. Specifically, energy can be wheeled among MGs to supply their deficits using the surplus of others. This study, therefore, presents an interactive model for the coordinated energy management of a distribution network with clustered MGs. Each MG not only schedules its local power generation and load consumption but also trades energy with neighbouring MGs in the distribution network. The power exchanges among the MGs, and that between the MGs and the distribution network are coordinated using a cooperative coalitional game theoretic approach. The framework aims at alleviating the distribution power losses while ensuring that all system variables, such as bus voltages, line flows, and reactive power requirements are within specified limits. Various system intermittencies are captured through scenario generation and reduction processes. Case studies on the IEEE-33 bus and PG & E-69 bus test systems with multiple coalitions forming MGs demonstrate the effectiveness of the proposed method in improving network payoffs, voltage profiles and alleviating the network losses and curtailment of available non-dispatchable resources.
机译:通过实现微电网之间的本地能源交换,微电网之间的能源合作是一种应付即将来临的能源危机的有吸引力的新解决方案。具体来说,可以在各大企业之间轮流使用能源,以利用其他企业的剩余来补充其赤字。因此,本研究提出了一个交互式模型,用于具有集群MG的配电网络的协调能源管理。每个MG不仅调度其本地发电和负载消耗,而且还与配电网络中的相邻MG进行能量交换。 MG之间的功率交换以及MG与配电网之间的功率交换使用合作联盟博弈理论方法进行协调。该框架旨在减轻配电功率损耗,同时确保所有系统变量(例如母线电压,线路流量和无功功率要求)均在规定的范围内。通过方案生成和缩减过程可以捕获各种系统间断性。对具有形成MG的多个联盟的IEEE-33总线和PG&E-69总线测试系统的案例研究表明,该方法在改善网络收益,电压分布图和减轻网络损耗以及减少可用不可分配资源方面是有效的。

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