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ECOOP: Applying Dynamic Coalition Formation to the Power Regulation Problem in Smart Grids

机译:ECOOP:将动态联盟形成应用于智能电网的功率调节问题

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摘要

In this work, we focus on one particular area of the smart grid, namely, the challenges faced by distribution network operators in securing the balance between supply and demand in the intraday market, as a growing number of load-controllable devices and small-scale, intermittent generators coming from renewables are expected to pervade the system. We introduce a multiagent design to facilitate coordinating the various actors in the grid. The underpinning of our approach consists of an online cooperation scheme, ECOOP, where agents learn a prediction model regarding potential coalition partners and so can respond in an agile manner to situations that are occurring in the grid, by means of negotiating and formulating speculative solutions, with respect to the estimated behavior of the system. We provide a computational characterization for our solution in terms of complexity, as well as an empirical analysis against real consumption data sets, based on the macro-model of the Australian energy market, showing a performance improvement of about 17%.
机译:在这项工作中,我们专注于智能电网的一个特定领域,即,随着越来越多的负载可控设备和小型设备的出现,配电网络运营商在确保日内市场供需之间的平衡方面面临的挑战。 ,来自可再生能源的间歇性发电机有望普及整个系统。我们介绍了一种多主体设计,以方便协调网格中的各个角色。我们方法的基础是在线合作计划ECOOP,代理商可以在其中学习有关潜在联盟伙伴的预测模型,从而可以通过协商和制定推测性解决方案以敏捷方式应对电网中发生的情况,关于系统的估计行为。基于澳大利亚能源市场的宏观模型,我们在复杂性方面为我们的解决方案提供了计算特征,并针对实际消耗数据集进行了经验分析,结果表明性能提高了约17%。

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