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Using Graph Models to Analyze the Vulnerability of Electric Power Networks
Authors:Åke J Holmgren
Institution:Division of Safety Research, Royal Institute of Technology, KTH, SE-100 44 Stockholm, Sweden. akeholm@kth.se
Abstract:In this article, we model electric power delivery networks as graphs, and conduct studies of two power transmission grids, i.e., the Nordic and the western states (U.S.) transmission grid. We calculate values of topological (structural) characteristics of the networks and compare their error and attack tolerance (structural vulnerability), i.e., their performance when vertices are removed, with two frequently used theoretical reference networks (the Erdös‐Rényi random graph and the Barabási‐Albert scale‐free network). Further, we perform a structural vulnerability analysis of a fictitious electric power network with simple structure. In this analysis, different strategies to decrease the vulnerability of the system are evaluated. Finally, we present a discussion on the practical applicability of graph modeling.
Keywords:Electric power system  graph theory  intentional attack  network analysis  random failure  vulnerability
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