English

Fast algorithm to identify cluster synchrony through fibration symmetries in large information-processing networks

Molecular Networks 2022-04-06 v2 Computational Complexity

Abstract

Recent studies revealed an important interplay between the detailed structure of fibration symmetric circuits and the functionality of biological and non-biological networks within which they have be identified. The presence of these circuits in complex networks are directed related to the phenomenon of cluster synchronization, which produces patterns of synchronized group of nodes. Here we present a fast, and memory efficient, algorithm to identify fibration symmetries over information-processing networks. This algorithm is specially suitable for large and sparse networks since it has runtime of complexity O(MlogN)O(M\log N) and requires O(M+N)O(M+N) of memory resources, where NN and MM are the number of nodes and edges in the network, respectively. We propose a modification on the so-called refinement paradigm to identify circuits symmetrical to information flow (i.e., fibers) by finding the coarsest refinement partition over the network. Finally, we show that the presented algorithm provides an optimal procedure for identifying fibers, overcoming the current approaches used in the literature.

Keywords

Cite

@article{arxiv.2110.01096,
  title  = {Fast algorithm to identify cluster synchrony through fibration symmetries in large information-processing networks},
  author = {Higor S. Monteiro and Ian Leifer and Saulo D. S. Reis and José S. Andrade, and Hernan A. Makse},
  journal= {arXiv preprint arXiv:2110.01096},
  year   = {2022}
}

Comments

13 pages, 7 figures

R2 v1 2026-06-24T06:35:24.185Z