Catastrophic cascade of failures in interdependent networks
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Open Access
- 1 April 2010
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 464 (7291), 1025-1028
- https://doi.org/10.1038/nature08932
Abstract
Complex networks have been studied intensively for a decade, but research still focuses on the limited case of a single, non-interacting network1,2,3,4,5,6,7,8,9,10,11,12,13,14. Modern systems are coupled together15,16,17,18,19 and therefore should be modelled as interdependent networks. A fundamental property of interdependent networks is that failure of nodes in one network may lead to failure of dependent nodes in other networks. This may happen recursively and can lead to a cascade of failures. In fact, a failure of a very small fraction of nodes in one network may lead to the complete fragmentation of a system of several interdependent networks. A dramatic real-world example of a cascade of failures (‘concurrent malfunction’) is the electrical blackout that affected much of Italy on 28 September 2003: the shutdown of power stations directly led to the failure of nodes in the Internet communication network, which in turn caused further breakdown of power stations20. Here we develop a framework for understanding the robustness of interacting networks subject to such cascading failures. We present exact analytical solutions for the critical fraction of nodes that, on removal, will lead to a failure cascade and to a complete fragmentation of two interdependent networks. Surprisingly, a broader degree distribution increases the vulnerability of interdependent networks to random failure, which is opposite to how a single network behaves. Our findings highlight the need to consider interdependent network properties in designing robust networks.Keywords
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This publication has 20 references indexed in Scilit:
- Dynamical Processes on Complex NetworksPublished by Cambridge University Press (CUP) ,2008
- Self-similarity of complex networksNature, 2005
- Evolution of NetworksPublished by Oxford University Press (OUP) ,2003
- Statistical mechanics of complex networksReviews of Modern Physics, 2002
- Universal Behavior of Load Distribution in Scale-Free NetworksPhysical Review Letters, 2001
- Random graphs with arbitrary degree distributions and their applicationsPhysical Review E, 2001
- Network Robustness and Fragility: Percolation on Random GraphsPhysical Review Letters, 2000
- Resilience of the Internet to Random BreakdownsPhysical Review Letters, 2000
- Emergence of Scaling in Random NetworksScience, 1999
- Collective dynamics of ‘small-world’ networksNature, 1998