Home /Research /Pose consensus in networks of heterogeneous robots with variable time delays
OTHER

Pose consensus in networks of heterogeneous robots with variable time delays

Carlos I. Aldana, Eduardo Romero, Emmanuel Nuño, Luis Basañez

Year
2014
Citations
29

Abstract

This paper proposes a novel pose (position and orientation) consensus controller for networks of heterogeneous robots modeled in the operational space. The proposed controller is a distributed proportional plus damping scheme that, with a slight modification, solves both the leader–follower and leaderless consensus problems. A singularity-free representation, unit quaternion, is used to describe the robots orientation, and the network is represented by an undirected and connected interconnection graph. Furthermore, it is shown that the controller is robust to interconnection variable time delays. Experiments with a network of two 6-degrees-of-freedom robots are presented to illustrate the performance of the proposed scheme. Copyright © 2014 John Wiley & Sons, Ltd.

Keywords

InterconnectionRobotControl theory (sociology)Computer scienceController (irrigation)GraphRepresentation (politics)Variable (mathematics)Orientation (vector space)Scheme (mathematics)

Related papers

Browse all OTHER papers