Home /Research /FLOCKING CONTROL OF MULTI―AGENT SYSTEMS WITH APPLICATION TO NONHOLONOMIC ? MULTI―ROBOTS
OTHER

FLOCKING CONTROL OF MULTI―AGENT SYSTEMS WITH APPLICATION TO NONHOLONOMIC ? MULTI―ROBOTS

Q Qin Li, ZP Zhong-Ping Jiang

Year
2009
Citations
13

Abstract

In this paper, we revisit the artificial potential based approach in the flocking control for multi-agent systems, where our main concerns are migration and trajectory tracking problems. The static destination or, more generally, the moving reference point is modeled by a virtual leader, whose information is utilized by some agents, called active agents (AA), for the controller design. We study a decentralized flocking controller for the case where the set of AAs is fixed. Some results on the velocity consensus, collision avoidance, group configuration and robustness are proposed. Further, we apply the proposed controller to the observer based flocking control of a team of nonholonomic mobile robots.

Keywords

Flocking (texture)Control theory (sociology)Computer scienceRobustness (evolution)Mobile robotMulti-agent systemControl engineeringRobotNonholonomic systemArtificial intelligence

Related papers

Browse all OTHER papers