Probing the robustness of nested multi-layer networks
Abstract
We consider a multi-layer network with two layers, , . Their intra-layer topology shows a scale-free degree distribution and a core-periphery structure. A nested structure describes the inter-layer topology, i.e., some nodes from , the generalists, have many links to nodes in , specialists only have a few. This structure is verified by analyzing two empirical networks from ecology and economics. To probe the robustness of the multi-layer network, we remove nodes from with their inter- and intra-layer links and measure the impact on the size of the largest connected component, , in , which we take as a robustness measure. We test different attack scenarios by preferably removing peripheral or core nodes. We also vary the intra-layer coupling between generalists and specialists, to study their impact on the robustness of the multi-layer network. We find that some combinations of attack scenario and intra-layer coupling lead to very low robustness values, whereas others demonstrate high robustness of the multi-layer network because of the intra-layer links. Our results shed new light on the robustness of bipartite networks, which consider only inter-layer, but no intra-layer links.
Cite
@article{arxiv.1911.03277,
title = {Probing the robustness of nested multi-layer networks},
author = {Giona Casiraghi and Antonios Garas and Frank Schweitzer},
journal= {arXiv preprint arXiv:1911.03277},
year = {2019}
}
Comments
20 pages, 9 figures