• DocumentCode
    2815257
  • Title

    Flocking of multi-agents with a virtual leader part II: with a virtual leader of varying velocity

  • Author

    Su, Housheng ; Wang, Xiaofan ; Lin, Zongli

  • Author_Institution
    Shanghai Jiao Tong Univ., Shanghai
  • fYear
    2007
  • fDate
    12-14 Dec. 2007
  • Firstpage
    1429
  • Lastpage
    1434
  • Abstract
    All agents being informed and the virtual leader traveling at a constant velocity are the two critical assumptions seen in the recent literature on flocking in multi-agent systems. Under these assumptions, Olfati-Saber in a recent IEEE Transactions on Automatic Control paper proposed a flocking algorithm which by incorporating a navigational feedback enables a group of agents to track a virtual leader. This paper revisits the problem of multi-agent flocking in the absence of the above two assumptions. In an earlier part, Part I, of this paper, we showed that, even when only a fraction of agents are informed, the Olfati-Saber flocking algorithm still enables all the informed agents to move with the desired constant velocity, and an uninformed agent to also move with the same desired velocity if it can be directly or indirectly influenced by the informed agents during the evolution. This part, Part II, of the paper considers the situation where the virtual leader travels with a varying velocity. In particular, we propose modification to the Olfati-Saber algorithm and show that the resulting algorithm enables the asymptotic tracking of the virtual leader. That is, the position and velocity of the center of mass of all agents will converge exponentially to those of the virtual leader. The convergent rate is also given.
  • Keywords
    distributed control; feedback; multi-agent systems; navigation; nonlinear systems; Olfati-Saber algorithm; agent movement; agent position; agent velocity; asymptotic tracking; exponential convergence; multiagent flocking; multiagent systems; navigational feedback; velocity variation; virtual leader; Algorithm design and analysis; Control systems; Educational institutions; Evolution (biology); Feedback; Marine animals; Multiagent systems; Navigation; USA Councils; Velocity control; Distributed control; flocking; informed agents; nonlinear systems; virtual leader;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Decision and Control, 2007 46th IEEE Conference on
  • Conference_Location
    New Orleans, LA
  • ISSN
    0191-2216
  • Print_ISBN
    978-1-4244-1497-0
  • Electronic_ISBN
    0191-2216
  • Type

    conf

  • DOI
    10.1109/CDC.2007.4434067
  • Filename
    4434067