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A new class of finite-time nonlinear consensus protocols for multi-agent systems

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Abstract

This paper is devoted to investigating the finite-time consensus problem for a multi-agent system in networks with undirected topology. A new class of global continuous time-invariant consensus protocols is constructed for each single-integrator agent dynamics with the aid of Lyapunov functions. In particular, it is shown that the settling time of the proposed new class of finite-time consensus protocols is upper bounded for arbitrary initial conditions. This makes it possible for network consensus problems that the convergence time is designed and estimated offline for a given undirected information flow and a group volume of agents. Finally, a numerical simulation example is presented as a proof of concept.

Original languageEnglish
Pages (from-to)363-370
Number of pages8
JournalInternational Journal of Control
Volume87
Issue number2
DOIs
StatePublished - 1 Feb 2014

Keywords

  • distributed control
  • finite-time stability
  • multi-agent systems
  • network consensus
  • undirected graph

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