arXiv · 2207.09501
Improving robustness of spatial networks via reinforced nodes
Abstract
Many real-world networks are embedded in space, and their resilience in the presence of reinforced nodes has not been studied. Here we model such networks using a spatial network model that have an exponential distribution of link length $r$ having a characteristic length $\zeta$. We find that reinforced nodes can significantly increase the resilience of the networks which varies with strength of spatial embedding. We also study different reinforced node distribution strategies for improving the network resilience. Interestingly, we find that the best strategy is highly dependent on the stage of the percolation process, i.e., the expected fraction of failures. Finally, we show that the reinforced nodes are analogous to an external field in percolation phase transition i.e., having the same critical exponents and that the critical exponents satisfy Widom's relation.
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Nir Vaturi, Bnaya Gross, Shlomo Havlin. 2022-07-19. Improving robustness of spatial networks via reinforced nodes. https://doi.org/10.1209/0295-5075%2Facd9e9
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