Home /Research /Multiscale Modelling and Analysis of Collective Decision Making in Swarm Robotics
SWARM

Multiscale Modelling and Analysis of Collective Decision Making in Swarm Robotics

M. Vigelius, Bernd Meyer, Geoffrey Pascoe

Year
2014
Citations
25
Access
Open access

Abstract

We present a unified approach to describing certain types of collective decision making in swarm robotics that bridges from a microscopic individual-based description to aggregate properties. Our approach encompasses robot swarm experiments, microscopic and probabilistic macroscopic-discrete simulations as well as an analytic mathematical model. Following up on previous work, we identify the symmetry parameter, a measure of the progress of the swarm towards a decision, as a fundamental integrated swarm property and formulate its time evolution as a continuous-time Markov process. Contrary to previous work, which justified this approach only empirically and a posteriori, we justify it from first principles and derive hard limits on the parameter regime in which it is applicable.

Keywords

Swarm roboticsSwarm behaviourArtificial intelligenceComputer scienceRoboticsMarkov decision processProbabilistic logicA priori and a posterioriProcess (computing)Aggregate (composite)

Related papers

Browse all SWARM papers