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Consensus of general linear multi-agent systems with intermittent communications

Yan Liu, Dongmei Xie, Lin Shi

2020International Journal of Systems Science10 citationsDOI

Abstract

This paper studies the consensus of continuous-time/discrete-time general linear multi-agent systems (MASs) with intermittent communications under a directed graph, respectively. By using algebraic graph theory and matrix theory, the equivalence between stabilisation and simultaneous stabilisation is analysed under different agents' dynamics (continuous-time or discrete-time) and network topology (undirected or directed graph). Simultaneously, we give the design methods of control gain matrices and weights. Then, by the average dwell time method of switched system theory, some sufficient consensus criteria for continuous-time/discrete-time general linear MASs are established, respectively. Finally, numerical examples are provided to verify the effectiveness of our results.

Topics & Concepts

Algebraic graph theoryDwell timeDiscrete time and continuous timeGraph theoryDirected graphEquivalence (formal languages)MathematicsLinear systemGraphMulti-agent systemComputer scienceControl theory (sociology)Topology (electrical circuits)Mathematical optimizationDiscrete mathematicsControl (management)CombinatoricsArtificial intelligenceMedicineStatisticsClinical psychologyMathematical analysisDistributed Control Multi-Agent SystemsNeural Networks Stability and SynchronizationMathematical and Theoretical Epidemiology and Ecology Models
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