DOE OSTI · 3012328
Connectivity, Centrality, and Bottleneckedness: On Graph Theoretic Methods for Power Systems
Abstract
This report provides an introduction to selected graph theoretic topics with pertinence to the structural analysis of electric power grid and communication systems. We focus on methodologies for defining, scoring, and identifying connectivity, spectral, and bottleneckeness properties in graphs, as well as vertex and edge importance measures such as centrality. We apply these measures to power systems and communications graph data, discuss and visualize the results, and comment on computational aspects of these methods. We show that graph theoretic methods can provide useful insights into grid and communication network structure, leading to tools and methods that could be used by electric utility engineers to improve key grid and communication network characteristics, such as resilience and scalability.
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Aksoy, Sinan G., Taft, Jeffrey D.. 2020-01-30. Connectivity, Centrality, and Bottleneckedness: On Graph Theoretic Methods for Power Systems. https://doi.org/10.2172/3012328
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