English

An equation-free approach to coarse-graining the dynamics of networks

Social and Information Networks 2012-02-28 v1 Adaptation and Self-Organizing Systems Computational Physics Physics and Society

Abstract

We propose and illustrate an approach to coarse-graining the dynamics of evolving networks (networks whose connectivity changes dynamically). The approach is based on the equation-free framework: short bursts of detailed network evolution simulations are coupled with lifting and restriction operators that translate between actual network realizations and their (appropriately chosen) coarse observables. This framework is used here to accelerate temporal simulations (through coarse projective integration), and to implement coarsegrained fixed point algorithms (through matrix-free Newton-Krylov GMRES). The approach is illustrated through a simple network evolution example, for which analytical approximations to the coarse-grained dynamics can be independently obtained, so as to validate the computational results. The scope and applicability of the approach, as well as the issue of selection of good coarse observables are discussed.

Keywords

Cite

@article{arxiv.1202.5618,
  title  = {An equation-free approach to coarse-graining the dynamics of networks},
  author = {Katherine A. Bold and Karthikeyan Rajendran and Balázs Ráth and Ioannis G. Kevrekidis},
  journal= {arXiv preprint arXiv:1202.5618},
  year   = {2012}
}

Comments

28 pages, 8 figures