DocumentCode
7833
Title
Containment control of general linear multi-agent systems with multiple dynamic leaders: A fast sliding mode based approach
Author
Huiyang Liu ; Long Cheng ; Min Tan ; Zengguang Hou
Author_Institution
State Key Lab. of Manage. & Control for Complex Syst., Inst. of Autom., Beijing, China
Volume
1
Issue
2
fYear
2014
fDate
Apr-14
Firstpage
134
Lastpage
140
Abstract
In this paper, distributed containment control problems of general linear multi-agent systems are investigated. The objective is to make the followers in a multi-agent network converge to the convex hull spanned by some leaders whose control inputs are nonzero and not available to any followers. Sliding mode surfaces are defined for the cases of reduced order and non-reduced order, respectively. For each case, fast sliding mode controllers are designed. It is shown that all the error trajectories exponentially reach the sliding mode surfaces in a finite time if for each follower, there exists at least one of the leaders who has a directed path to the follower, and the leaders´ control inputs are bounded. The control Lyapunov function for exponential finite time stability, motivated by the fast terminal sliding mode control, is used to prove reachability of the sliding mode surfaces. Simulation examples are given to illustrate the theoretical results.
Keywords
Lyapunov methods; asymptotic stability; convex programming; multi-agent systems; variable structure systems; control Lyapunov function; convex hull; distributed containment control problems; error trajectories; exponential finite time stability; fast sliding mode based approach; fast sliding mode controllers; general linear multiagent systems; multiagent network; multiple dynamic leaders; sliding mode surfaces; Manifolds; Multi-agent systems; Robot kinematics; Robot sensing systems; Sliding mode control; Trajectory; Multi-agent systems; containment control; cooperative control; exponential finite time; fast terminal sliding mode;
fLanguage
English
Journal_Title
Automatica Sinica, IEEE/CAA Journal of
Publisher
ieee
ISSN
2329-9266
Type
jour
DOI
10.1109/JAS.2014.7004542
Filename
7004542
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