activity
19982009
most citedInterplay between function and structure in complex networks

55 citations · 126 across the 26 of their papers we have counts for

collaborators
Showing cond-mat.dis-nnShow all

11 papers · 1 filter

cond-mat.dis-nn2005

Decision Making, Strategy dynamics, and Crowd Formation in Agent-based models of Competing Populations

K. P. Chan, Pak Ming Hui, Neil F. Johnson

The Minority Game (MG) is a basic multi-agent model representing a simplified and binary form of the bar attendance model of Arthur. The model has an informationally efficient phas…

cond-mat.dis-nn2005

Transitions in collective response in multi-agent models of competing populations driven by resource level

Sonic H. Y. Chan, T. S. Lo, P. M. Hui +1

We aim to study the effects of controlling the resource level in agent-based models. We study, both numerical and analytically, a Binary-Agent-Resource (B-A-R) model in which a…

cond-mat.dis-nn20041 cited

Evolution Management in a Complex Adaptive System: Engineering the Future

David M. D. Smith, Neil F. Johnson

We examine the feasibility of predicting and subsequently managing the future evolution of a Complex Adaptive System. Our archetypal system mimics a competitive population of mecha…

cond-mat.dis-nn2004

Effect of congestion costs on shortest paths through complex networks

Douglas J. Ashton, Timothy C. Jarrett, Neil F. Johnson

We analyze analytically the effect of congestion costs within a physically relevant, yet exactly solvable network model featuring central hubs. These costs lead to a competition be…

cond-mat.dis-nn2004

Plateaux formation, abrupt transitions, and fractional states in a competitive population with limited resources

H. Y. Chan, T. S. Lo, P. M. Hui +1

We study, both numerically and analytically, a Binary-Agent-Resource (B-A-R) model consisting of N agents who compete for a limited resource 1/2<L/N <1, where L is the maximum avai…

cond-mat.dis-nn2004

Error-driven Global Transition in a Competitive Population on a Network

Sehyo Charley Choe, Neil F. Johnson, Pak Ming Hui

We show, both analytically and numerically, that erroneous data transmission generates a global transition within a competitive population playing the Minority Game on a network. T…