English

Synchronization in Weighted Uncorrelated Complex Networks in a Noisy Environment: Optimization and Connections with Transport Efficiency

Statistical Mechanics 2007-06-13 v1 Disordered Systems and Neural Networks Networking and Internet Architecture

Abstract

Motivated by synchronization problems in noisy environments, we study the Edwards-Wilkinson process on weighted uncorrelated scale-free networks. We consider a specific form of the weights, where the strength (and the associated cost) of a link is proportional to (kikj)β(k_{i}k_{j})^{\beta} with kik_{i} and kjk_{j} being the degrees of the nodes connected by the link. Subject to the constraint that the total network cost is fixed, we find that in the mean-field approximation on uncorrelated scale-free graphs, synchronization is optimal at β\beta^{*}==-1. Numerical results, based on exact numerical diagonalization of the corresponding network Laplacian, confirm the mean-field results, with small corrections to the optimal value of β\beta^{*}. Employing our recent connections between the Edwards-Wilkinson process and resistor networks, and some well-known connections between random walks and resistor networks, we also pursue a naturally related problem of optimizing performance in queue-limited communication networks utilizing local weighted routing schemes.

Keywords

Cite

@article{arxiv.cond-mat/0609098,
  title  = {Synchronization in Weighted Uncorrelated Complex Networks in a Noisy Environment: Optimization and Connections with Transport Efficiency},
  author = {G. Korniss},
  journal= {arXiv preprint arXiv:cond-mat/0609098},
  year   = {2007}
}

Comments

Papers on related research can be found at http://www.rpi.edu/~korniss/Research/