净能源计量下线性复杂性中的分布式能源资源协同优化

IF 8.6 1区 工程技术 Q1 ENERGY & FUELS IEEE Transactions on Sustainable Energy Pub Date : 2024-06-21 DOI:10.1109/TSTE.2024.3417249
Ahmed S. Alahmed;Lang Tong;Qing Zhao
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引用次数: 0

摘要

在净电能计量电价下,考虑了表后分布式能源的共同优化。所考虑的分布式能源资源包括可再生能源发电、灵活需求和电池储能系统。能源管理系统根据本地可用的随机可再生能源,通过求解一个随机动态程序,最大化预期运行盈余,从而共同优化消耗和电池储能。为了规避动态程序求解的指数级复杂性,我们提出了一种基于松弛投影法的闭式线性计算复杂度协同优化算法。我们获得了所提方案最优的充分条件。数值研究表明,计算成本降低了几个数量级,优化差距也显著缩小。
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Co-Optimizing Distributed Energy Resources in Linear Complexity Under Net Energy Metering
The co-optimization of behind-the-meter distributed energy resources is considered for prosumers under the net energy metering tariff. The distributed energy resources considered include renewable generations, flexible demands, and battery energy storage systems. An energy management system co-optimizes the consumptions and battery storage based on locally available stochastic renewables by solving a stochastic dynamic program that maximizes the expected operation surplus. To circumvent the exponential complexity of the dynamic program solution, we propose a closed-form and linear computation complexity co-optimization algorithm based on a relaxation-projection approach to a constrained stochastic dynamic program. Sufficient conditions for optimality for the proposed solution are obtained. Numerical studies demonstrate orders of magnitude reduction of computation costs and significantly reduced optimality gap.
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来源期刊
IEEE Transactions on Sustainable Energy
IEEE Transactions on Sustainable Energy ENERGY & FUELS-ENGINEERING, ELECTRICAL & ELECTRONIC
CiteScore
21.40
自引率
5.70%
发文量
215
审稿时长
5 months
期刊介绍: The IEEE Transactions on Sustainable Energy serves as a pivotal platform for sharing groundbreaking research findings on sustainable energy systems, with a focus on their seamless integration into power transmission and/or distribution grids. The journal showcases original research spanning the design, implementation, grid-integration, and control of sustainable energy technologies and systems. Additionally, the Transactions warmly welcomes manuscripts addressing the design, implementation, and evaluation of power systems influenced by sustainable energy systems and devices.
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