Title :
Containment analysis and design for high-order linear time-invariant singular swarm systems with time delays
Author :
Dong, Xiwang ; Xi, Jianxiang ; Shi, Zongying ; Zhong, Yisheng
Author_Institution :
Dept. of Autom., Tsinghua Univ., Beijing, China
Abstract :
Containment analysis and design problems for high-order linear time-invariant singular swarm systems with time delays on directed graphs are dealt with. To eliminate impulse terms in singular swarm systems and ensure that the singular swarm systems can achieve containment, time-delayed protocols are presented for leaders and followers respectively. By model transformation, containment problems of singular swarm systems are converted into the asymptotically stable problems of multiple low-dimensional time-delayed systems. In terms of linear matrix inequality, sufficient conditions are presented for time-delayed singular swarm systems to achieve containment, which are independent of the number of agents. By applying changing variable methods, an approach is provided to determine the gain matrix in the protocols. Numerical simulations are shown to demonstrate theoretical results.
Keywords :
asymptotic stability; control system synthesis; delay systems; directed graphs; linear matrix inequalities; linear systems; asymptotic stability; changing variable method; containment analysis; containment problem; directed graph; gain matrix; high-order linear time-invariant singular swarm system design; impulse term; leader-follower; linear matrix inequality; model transformation; multiple low-dimensional time-delayed system; numerical simulation; time-delayed protocol; time-delayed singular swarm system; Delay effects; Graph theory; Lead; Linear matrix inequalities; Protocols; Symmetric matrices; Topology; Containment; High-order; Singular swarm system; Time delay;
Conference_Titel :
Control Conference (CCC), 2012 31st Chinese
Conference_Location :
Hefei
Print_ISBN :
978-1-4673-2581-3