Solvability conditions and design for state synchronization of multi-agent systems
- Anton A. Stoorvogel,
- Ali Saberi,
- ,
- Zhenwei Liu
- University of Twente,
- Washington State University
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Abstract
This paper derives conditions on the agents for the existence of a protocol which achieves synchronization of homogeneous multi-agent systems (MAS) with partial-state coupling, where the communication network is directed and weighted. These solvability conditions are necessary and sufficient for single input agents and sufficient for multi input agents. The solvability conditions reveal that the synchronization problem is primarily solvable for two classes of agents. This first class consists of at most weakly unstable agents (i.e. agents have all eigenvalues in the closed left half plane) and the second class consists of at most weakly non-minimum-phase agents (i.e. agents have all zeros in the closed left half plane). Under our solvability condition, we provide in this paper a design, utilizing H∞ optimal control technique.
Bibliographic Information
Output type
Original language
EnglishArticle number
7963677Pages from-to (Number of pages)
Pages 4675-4680 (6 pages)Publication milestones
- Published - 29/06/2017
Publication status
Publisher
Institute of Electrical and Electronics Engineers Inc.Publication series
- Publication series name: Proceedings of the American Control Conference
ISSN (Print): 0743-1619
ISBN (Electronic)
9781509059928Publication IDs
- Scopus: 85027037683
