Title
Modulus Consensus In A Network Of Singularly Perturbed Systems With Collaborative And Antagonistic Interactions
Abstract
This paper addresses the modulus consensus in a network of singularly perturbed systems, all of which own multi-time scales characteristics. The interactions among the agents are collaborative and antagonistic interactions, and it can been modelled by a signed directed graph. Also, the effect of time-varying delay has been taken into account when modelling the agent dynamics. Based on singularly perturbed decomposition method, Kronecker product technique and the comparison principle, several sufficient conditions are presented under which networked singularly perturbed time-varying delay systems with collaborative and antagonistic interactions achieve modulus consensus. Moreover, the upper bound of singular perturbation parameter is deduced explicitly. Two simulation examples are presented to illustrate the validity of the proposed results.
Year
DOI
Venue
2017
10.1080/00207179.2016.1263396
INTERNATIONAL JOURNAL OF CONTROL
Keywords
Field
DocType
Singularly perturbed system, modulus consensus, collaborative and antagonistic interactions
Mathematical optimization,Kronecker product,Control theory,Upper and lower bounds,Directed graph,Modulus,Decomposition method (constraint satisfaction),Singular perturbation,Mathematics
Journal
Volume
Issue
ISSN
90
12
0020-7179
Citations 
PageRank 
References 
4
0.38
19
Authors
4
Name
Order
Citations
PageRank
Wu Yang1194.98
Yan-Wu Wang251039.98
Jiang-Wen Xiao31069.86
Wu-Hua Chen486958.24