DocumentCode :
3744081
Title :
Patterned dynamics of delay-coupled swarms with random communication graphs
Author :
K. Szwaykowska;L. Mier-y-Teran-Romero;I. B. Schwartz
Author_Institution :
US Naval Research Laboratory, Code 6792, Nonlinear System Dynamics Section, Plasma Physics Division, Washington, DC 20375, United States
fYear :
2015
Firstpage :
6496
Lastpage :
6501
Abstract :
Swarm and modular robotics are an emerging area in control of autonomous systems. However, coordinating a large group of interacting autonomous agents requires careful consideration of the logistical issues involved. In particular, inter-agent communication generally involves time delay, and bandwidth restrictions limit the number of neighbors with which each agent in the swarm can communicate. In this paper, we analyze coherent pattern dynamics of groups of delay-coupled agents, where the communication network is an Erdös-Renyi graph. We show that overall motion patterns for a globally-coupled swarm persist under decreasing network connectivity, and derive the bifurcation structure scaling relations for the emergence of different swarming behaviors as a function of the average network degree. We show excellent agreement between the theoretical scaling results and numerical simulations.
Keywords :
"Couplings","Aggregates","Communication networks","Bifurcation","Mathematical model","Dynamics","Delays"
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
Type :
conf
DOI :
10.1109/CDC.2015.7403243
Filename :
7403243
Link To Document :
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