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Consensus Problems on Networks With Antagonistic Interactions

IEEE Transactions on Automatic Control · 2012 · Vol. 58(4) · pp. 935–946
Claudio Altafini

Abstract

In a consensus protocol an agreement among agents is achieved thanks to the collaborative efforts of all agents, expresses by a communication graph with nonnegative weights. The question we ask in this paper is the following: is it possible to achieve a form of agreement also in presence of antagonistic interactions, modeled as negative weights on the communication graph? The answer to this question is affirmative: on signed networks all agents can converge to a consensus value which is the same for all agents except for the sign. Necessary and sufficient conditions are obtained to describe cases in which this is possible. These conditions have strong analogies with the theory of monotone systems. Linear and nonlinear Laplacian feedback designs are proposed.

Distributed Control Multi-Agent SystemsGene Regulatory Network AnalysisStability and Control of Uncertain SystemsMonotone polygonGraphNonlinear systemComputer scienceSigned graphLaplacian matrixTheoretical computer scienceConsensusMathematicsGraph theory
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Consensus Problems in Networks of Agents With Switching Topology and Time-Delays
IEEE Transactions on Automatic Control · 2004 · 12,614 citations
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