2019•Unpublished venueRequires access

Adaptive Finite-Time Consensus for Multi-Agent Systems with Input Constraints

Yanying Zhou, Guoshan Zhang

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Abstract

This paper studies the finite-time consensus problem for leader-following nonlinear multi-agent systems with input constraints. Under the condition that the coupling weights are unknown, finite-time control protocol combined with adaptive feedback controller is proposed. Based on homogeneous theory, it is proved that the states of followers can converge to those of leader in finite time through local interaction under undirected graph. Finally, two numerical examples are presented to verify the effectiveness of theoretical results.

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What this paper is about

This paper studies the finite-time consensus problem for leader-following nonlinear multi-agent systems with input constraints. Under the condition that the coupling weights are unknown, finite-time control protocol combined with adaptive feedback controller is proposed. Based on homogeneous theory, it is proved that the states of followers can converge to those of leader in finite time through local interaction under undirected graph. Finally, two numerical examples are presented to verify the effectiveness of theoretical results.

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Available abstract

This paper studies the finite-time consensus problem for leader-following nonlinear multi-agent systems with input constraints. Under the condition that the coupling weights are unknown, finite-time control protocol combined with adaptive feedback controller is proposed. Based on homogeneous theory, it is proved that the states of followers can converge to those of leader in finite time through local interaction under undirected graph. Finally, two numerical examples are presented to verify the effectiveness of theoretical results.

Key concepts: Multi-agent system, Nonlinear system, Computer science, Consensus, Control theory (sociology), Homogeneous, Controller (irrigation), Protocol (science)

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