Toward Stronger Robustness of Network Controllability: A Snapback Network Model
Systems and Control
2020-04-28 v3
Abstract
A new complex network model, called q-snapback network, is introduced. Basic topological characteristics of the network, such as degree distribution, average path length, clustering coefficient and Pearson correlation coefficient, are evaluated. The typical 4-motifs of the network are simulated. The robustness of both state and structural controllabilities of the network against targeted and random node- and edge-removal attacks, with comparisons to the multiplex congruence network and the generic scale-free network, are presented. It is shown that the q-snapback network has the strongest robustness of controllabilities due to its advantageous inherent structure with many chain- and loop-motifs.
Cite
@article{arxiv.1801.06082,
title = {Toward Stronger Robustness of Network Controllability: A Snapback Network Model},
author = {Yang Lou and Lin Wang and Guanrong Chen},
journal= {arXiv preprint arXiv:1801.06082},
year = {2020}
}
Comments
13 pages, 11 figures