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Reducing Cascading Failure Risk by Increasing Infrastructure Network Interdependence

delete2017-03-20
delete137
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OA
AI
M
Mert Korkali
J
Jason G. Veneman
B
Brian F. Tivnan
J
James P. Bagrow
P
Paul Hines *
DOI:10.1038/srep44499delete
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Abstract

Abstract

En 中文
Increased interconnection between critical infrastructure networks, such as electric power and communications systems, has important implications for infrastructure reliability and security. Others have shown that increased coupling between networks that are vulnerable to internetwork cascading failures can increase vulnerability. However, the mechanisms of cascading in these models differ from those in real systems and such models disregard new functions enabled by coupling, such as intelligent control during a cascade. This paper compares the robustness of simple topological network models to models that more accurately reflect the dynamics of cascading in a particular case of coupled infrastructures. First, we compare a topological contagion model to a power grid model. Second, we compare a percolation model of internetwork cascading to three models of interdependent power-communication systems. In both comparisons, the more detailed models suggest substantially different conclusions, relative to the simpler topological models. In all but the most extreme case, our model of a smart power network coupled to a communication system suggests that increased power-communication coupling decreases vulnerability, in contrast to the percolation model. Together, these results suggest that robustness can be enhanced by interconnecting networks with complementary capabilities if modes of internetwork failure propagation are constrained.
Keywords:
COMPLEX NETWORKS
POWER-SYSTEMS
MODEL
VULNERABILITY
VALIDATION
MITIGATION
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Scientific Reports cover
Scientific Reports
IF:
3.9
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27.8W
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M
MITRE Corporation
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Papers: 278
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L
Lawrence Livermore National Laboratory
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united states department of energy (doe)
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