Mean-Field and Non-Mean-Field Behaviors in Scale-free Networks with Random Boolean Dynamics
Abstract
We study two types of simplified Boolean dynamics over scale-free networks, both with synchronous update. Assigning only Boolean functions AND and XOR to the nodes with probability and , respectively, we are able to analyze the density of 1's and the Hamming distance on the network by numerical simulations and by a mean-field approximation (annealed approximation). We show that the behavior is quite different if the node always enters in the dynamic as its own input (self-regulation) or not. The same conclusion holds for the Kauffman KN model. Moreover, the simulation results and the mean-field ones (i) agree well when there is no self-regulation, and (ii) disagree for small when self-regulation is present in the model.
Keywords
Cite
@article{arxiv.0910.5206,
title = {Mean-Field and Non-Mean-Field Behaviors in Scale-free Networks with Random Boolean Dynamics},
author = {A. Castro e Silva and J. Kamphorst Leal da Silva},
journal= {arXiv preprint arXiv:0910.5206},
year = {2010}
}
Comments
12 pages, 7 figures