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Uncovering the inherited vulnerability of electric distribution networks

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arxiv 2409.06194 v1 pith:DOWPZEBE submitted 2024-09-10 physics.soc-ph cs.SYeess.SY

classification physics.soc-phcs.SYeess.SY
keywords networksdistributionexaminednetworkvulnerabilityduringelectricevolving
verification ladder T0 review T1 audit T2 compute T3 formal
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Research on the vulnerability of electric networks with a complex network approach has produced significant results in the last decade, especially for transmission networks. These studies have shown that there are causal relations between certain structural properties of networks and their vulnerabilities, leading to an inherent weakness. The purpose of present work was twofold: to test the hypotheses already examined on evolving transmission networks and to gain a deeper understanding on the nature of these inherent weaknesses. For this, historical models of a medium-voltage distribution network supply area were reconstructed and analysed. Topological efficiency of the networks was calculated against node and edge removals of different proportions. We found that the tolerance of the evolving grid remained practically unchanged during the examined period, implying that the increase in size is dominantly caused by the connection of geographically and spatially constrained supply areas and not by an evolutionary process. We also show that probability density functions of centrality metrics, typically connected to vulnerability, show only minor variation during the early evolution of the examined distribution network, and in many cases resemble the properties of the modern days.

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  1. Investigating the emergent invariant properties of Hungarian electric distribution networks

    physics.soc-ph 2025-06 conditional novelty 5.0 of 10

    Five Hungarian MV distribution networks show statistically similar powerline length, degree, and betweenness distributions, suggesting common design rules.

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