生成连接的,简单的,和现实的网络图形智能电网

Osman Boyaci, M. Narimani, K. Davis, E. Serpedin
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引用次数: 2

摘要

智能电网将通信系统与电网集成,通过实时数据采集和控制信号,实现电网运行和指挥。智能电网基础设施的设计、分析和模拟以及对电网故障影响的预测在很大程度上依赖于底层电网和通信系统的拓扑结构。尽管通信系统对智能电网的运行产生了巨大的影响,但对智能电网中通信系统拓扑结构的研究却很少。权力社区缺乏现实的生成式通信系统模型,这些模型可以校准以匹配现实世界的数据。为了解决这个问题,本文提出了一个框架,通过模拟现实世界智能电网的拓扑结构,为部署在智能电网中的通信系统生成底层拓扑图。为此,我们更新了Chung-Lu算法,以保证通信网络的连通性,并匹配现实世界智能电网的度分布,而不是遵循预期的度分布。此外,考虑了通信系统的关键特征,如直径、平均最短路径、聚类系数、分类度和频谱间隙,以生成最相似的现实世界通信网络,用于智能电网的研究。我们相信,本文提出的算法将为智能电网研究生成真实的网络图,从而使电力行业受益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generating Connected, Simple, and Realistic Cyber Graphs for Smart Grids
Smart grids integrate communication systems with power networks to enable power grids operation and command through real-time data collection and control signals. Designing, analyzing, and simulating smart grid infrastructures as well as predicting the impact of power network failures strongly depend on the topologies of the underlying power network and communication system. Despite the substantial impact that the communication systems bring to smart grid operation, the topology of communication systems employed in smart grids was less studied. The power community lacks realistic generative communication system models that can be calibrated to match real-world data. To address this issue, this paper proposes a framework to generate the underlying topological graphs for the communication systems deployed in smart grids by mimicking the topology of real-world smart grids. In this regard, we have updated the Chung-Lu algorithm to guarantee the communication network connectivity and to match the degree distribution of a real-world smart grid rather than the following an expected degree distribution. In addition, key characteristics of communication systems such as diameter, average shortest paths, clustering coefficients, assortativity, and spectral gap were taken into consideration to generate the most similar real-world communication network for smart grid studies. We believe that the proposed algorithm to generate realistic cyber graphs for smart grid studies will benefit the power community.
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