考虑非线性传热过程的配电供热一体化系统的完全分散调度

Qinghan Sun, Qun Chen, Ke-Lun He
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引用次数: 1

摘要

分布式能源系统与配电网和区域供热系统相连接的分散调度问题近年来备受关注。然而,供热系统中不同温度流体之间的换热通常缺乏适当的考虑。在这项工作中,管道的延迟和损失特性以及在DHS换热站的换热进行了全面的建模。采用一种基于乘法器交替方向法(ADMM)的全分散方案来解决调度问题。一个由17个agent组成的集成系统的案例研究验证了综合DHS模型的重要性和所提出方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fully Decentralized Dispatch of Integrated Power Distribution and Heating Systems Considering Nonlinear Heat Transfer Processes
Decentralized dispatch of distributed energy systems connected with distribution networks(DN) and district heating systems(DHS) has drawn great attention recently. However, the heat transfer between fluids with different temperatures in the heating system usually lacks proper consideration. In this work, the delay and loss characteristics of the pipelines and the heat transfer at the heat exchange stations in the DHS are thoroughly modelled. A fully decentralized solution based on Alternating Direction Method of Multipliers(ADMM) is used to solve the dispatch problem. Case study on a integrated system composed of 17 agents validates the importance of a comprehensive DHS model and the effectiveness of the proposed method.
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