PERFORMANCE AND ROBUSTNESS OF CELLULAR AUTOMATA COMPUTATION ON IRREGULAR NETWORKS

Author:

DARABOS CHRISTIAN1,GIACOBINI MARIO2,TOMASSINI MARCO1

Affiliation:

1. Information Systems Department, University of Lausanne, CH-1015 Lausanne, Switzerland

2. Department of Animal Production Epidemiology and Ecology and, Molecular Biotechnology Center, University of Torino IT-10100 Torino, Italy

Abstract

We investigate the performances of collective task-solving capabilities and the robustness of complex networks of automata using the density and synchronization problems as typical cases. We show by computer simulations that evolved Watts–Strogatz small-world networks have superior performance with respect to several kinds of scale-free graphs. In addition, we show that Watts–Strogatz networks are as robust in the face of random perturbations, both transient and permanent, as configuration scale-free networks, while being widely superior to Barabási–Albert networks. This result differs from information diffusion on scale-free networks, where random faults are highly tolerated by similar topologies.

Publisher

World Scientific Pub Co Pte Lt

Subject

Control and Systems Engineering

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