PhysicsComputer ScienceMathematics

Timoteo Carletti, Duccio Fanelli, Renaud Lambiotte

2020.10.27Journal of Physics-Complexity

DOI: 10.1088/2632-072x/abe27e

tlooto Summary

A one-parameter family of random walk processes on hypergraphs, where a parameter biases the dynamics of the walker towards hyperedges of low or high cardinality, is proposed and tested on artificial and real-world hyper graphs.

Abstract

We propose a one-parameter family of random walk processes on hypergraphs, where a parameter biases the dynamics of the walker towards hyperedges of low or high cardinality. We show that for each value of the parameter, the resulting process defines its own hypergraph projection on a weighted network. We then explore the differences between them by considering the community structure associated to each random walk process. To do so, we adapt the Markov stability framework to hypergraphs and test it on artificial and real-world hypergraphs.

Citation format

CARLETTI, Timoteo; FANELLI, Duccio; LAMBIOTTE, Renaud. Random walks and community detection in hypergraphs [preprint]. arXiv, 2020. arXiv:2010.14355.