DocumentCode :
739534
Title :
Event-Based H_{\\infty } Consensus Control of Multi-Agent Systems With Relative Output Feedback: The Finite-Horizon Case
Author :
Qinyuan Liu ; Zidong Wang ; Xiao He ; Zhou, D.H.
Author_Institution :
Dept. of Autom., Tsinghua Univ., Beijing, China
Volume :
60
Issue :
9
fYear :
2015
Firstpage :
2553
Lastpage :
2558
Abstract :
In this technical note, the H consensus control problem is investigated over a finite horizon for general discrete time-varying multi-agent systems subject to energy-bounded external disturbances. A decentralized estimation-based output feedback control protocol is put forward via the relative output measurements. A novel event-based mechanism is proposed for each intelligent agent to utilize the available information in order to decide when to broadcast messages and update control input. The aim of the problem addressed is to co-design the time-varying controller and estimator parameters such that the controlled multi-agent systems achieve consensus with a disturbance attenuation level γ over a finite horizon [0, T]. A constrained recursive Riccati difference equation approach is developed to derive the sufficient conditions under which the H consensus performance is guaranteed in the framework of event-based scheme. Furthermore, the desired controller and estimator parameters can be iteratively computed by resorting to the Moore-Penrose pseudo inverse. Finally, the effectiveness of the developed event-based H∞ consensus control strategy is demonstrated in the numerical simulation.
Keywords :
H control; Riccati equations; control system synthesis; difference equations; discrete time systems; feedback; inverse problems; iterative methods; multi-agent systems; multivariable control systems; recursive estimation; time-varying systems; Moore-Penrose pseudo inverse; constrained recursive Riccati difference equation approach; decentralized estimation-based output feedback control protocol; disturbance attenuation level; energy bounded external disturbance; event-based H consensus control; event-based mechanism; finite horizon; general discrete time-varying multiagent system; intelligent agent; iterative method; numerical simulation; sufficient conditions; time-varying controller design; Attenuation; Multi-agent systems; Nickel; Output feedback; Performance analysis; Protocols; Time-varying systems; $H_{infty}$ consensus; Event-based mechanism; Multi-agent systems; Riccati difference equation; event-based mechanism; multi-agent systems; output feedback;
fLanguage :
English
Journal_Title :
Automatic Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9286
Type :
jour
DOI :
10.1109/TAC.2015.2394872
Filename :
7017517
Link To Document :
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