Litcius/Paper detail

Practical Predefined-Time Output-Feedback Consensus Tracking Control for Multiagent Systems

An-Min Zou, Yangyang Liu, Zeng‐Guang Hou, Zhipei Hu

2022IEEE Transactions on Cybernetics122 citationsDOI

Abstract

This article addresses the issue of output-feedback consensus control of multiagent systems under the directed topology and subject to bounded external disturbances. By employing a smooth time-varying function, a distributed practical predefined-time (PPT) observer is developed to estimate the reference trajectory for the entire team (i.e., the leader's state) and a practical preset-time extended-state observer is also proposed to estimate bounded disturbances and unmeasurable system states. Next, a novel continuous and nonsingular PPT consensus control law is designed on the basis of the observers. Furthermore, the designed control protocol can achieve PPT stability, that is, consensus tracking errors are enforced to a neighborhood around zero within a predetermined time, which can be specified a priori, independent of initial states of agents and/or any other design parameters. Finally, illustrative numerical examples, including a comparative one, are provided to demonstrate the performance of the present predefined-time control approach.

Topics & Concepts

Control theory (sociology)Bounded functionObserver (physics)Multi-agent systemComputer scienceA priori and a posterioriTrajectoryProtocol (science)State observerState (computer science)Stability (learning theory)Tracking (education)ConsensusInvertible matrixControl (management)MathematicsAlgorithmArtificial intelligenceNonlinear systemMathematical analysisEpistemologyPedagogyPhysicsPhilosophyPure mathematicsAlternative medicineAstronomyMachine learningPathologyPsychologyMedicineQuantum mechanicsDistributed Control Multi-Agent SystemsAdaptive Control of Nonlinear SystemsStability and Control of Uncertain Systems