论文标题
电网中经济和频率控制的多层,多时间尺度模型方法
A multilayer, multi-timescale model approach for economic and frequency control in power grids
论文作者
论文摘要
由于分散的可再生能源和存储的进料增加,电源系统会受到根本变化。系统中新参与者的分散性质需要新的概念来构建电网,并完成从几秒钟到几天的各种控制任务。在这里,我们介绍了涵盖所有控制时间尺度的多重动态网络模型。至关重要的是,我们结合了一个分散的,自组织的低级控制和智能网格设备的网格层,该设备可以从远程来源汇总信息。频率控制的安全至关重要的任务由前者执行,这是后者要求匹配的经济目标。在同一模型中具有两个方面,使我们能够研究层之间的相互作用。值得注意的是,我们发现以聚合形式添加交流并不能改善所考虑的情况下的性能。取而代之的是,系统的自组织状态已经包含学习整个网格中需求结构所需的信息。此处介绍的模型非常灵活,可以适应与未来电网有关的各种场景。我们预计在具有分布式生成的低能微电网的背景下,它特别有用。
Power systems are subject to fundamental changes due to the increasing infeed of decentralised renewable energy sources and storage. The decentralised nature of the new actors in the system requires new concepts for structuring the power grid, and achieving a wide range of control tasks ranging from seconds to days. Here we introduce a multiplex dynamical network model covering all control timescales. Crucially, we combine a decentralised, self-organised low-level control and a smart grid layer of devices that can aggregate information from remote sources. The safety-critical task of frequency control is performed by the former, the economic objective of demand matching dispatch by the latter. Having both aspects present in the same model allows us to study the interaction between the layers. Remarkably, we find that adding communication in the form of aggregation does not improve the performance in the cases considered. Instead, the self-organised state of the system already contains the information required to learn the demand structure in the entire grid. The model introduced here is highly flexible, and can accommodate a wide range of scenarios relevant to future power grids. We expect that it is especially useful in the context of low-energy microgrids with distributed generation.