Approach to network failure due to intrinsic fluctuations
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American Physical Society
Abstract
We investigate the asymptotic failure of the network arising solely from intrinsic fluctuations in the flux passing through its nodes. By modeling the flux as random walkers and the node failure induced by large fluctuations as extreme events, it is shown that three distinct nodal failure regimes can be identified before a complete network failure takes place. Further, the approach to network failure through these three regimes is shown to be qualitatively similar for square lattice, all-to-all, scale-free, and Erdos-Renyi networks. We obtain approximate analytical description of the approach to failure for an all-to-all network. This network failure scenario is also demonstrated on a real flight transportation network.
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Keywords
Cascades, Dynamics of networks, Network evolution, Network phase transitions, Network resilience, Network stability, Robustness, Barabasi-Albert network, Erdos-Renyi graph, Scale free & inhomogeneous networks, Small-world networks, Stochastic networks, Watts-Strogatz network, Diffusion & random walks, Extreme event statistics, 2026-JUL-WEEK2, TOC-JUL-2026, 2026
Citation
Physical Review E, 113, L062302.