Publication | Closed Access
Stochastic Consensus Control of Second-Order Nonlinear Multiagent Systems With External Disturbances
34
Citations
44
References
2017
Year
Nonlinear ControlEngineeringGraph TheoryConsensus Control MethodMean-square Exponential ConsensusNetworked ControlDistributed CoordinationDistributed OptimizationNetwork AnalysisSystems EngineeringDistributed Control SystemStochastic ControlExternal DisturbancesStochastic Consensus ControlDecentralised SystemStability
A distributed consensus control method is developed in this paper for second-order nonlinear multiagent systems with external stochastic disturbances. By utilizing the graph theory, the stochastic theory, the control technique, and the linear matrix inequality method, sufficient conditions are derived to guarantee the convergence to mean-square exponential consensus for strongly connected proximity networks and proximity networks with directed spanning trees, respectively. Particularly, using such a methodology, a detailed distributed consensus controller design procedure is provided for networked Euler–Lagrange systems, which are often used in mechanical engineering processes. Finally, the effectiveness of the proposed consensus control method is illustrated by numerical simulations on networked Euler–Lagrange systems.
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