JOURNAL ARTICLE

Constrained H∞ Consensus of Second-Order Discrete-Time Multi-Agent Networks With Nonconvex Velocity Constraints

Jingjing WuJia Liu

Year: 2021 Journal:   IEEE Access Vol: 9 Pages: 21416-21424   Publisher: Institute of Electrical and Electronics Engineers

Abstract

This paper addresses the constrained H consensus of second-order discrete-time multi-agent systems with nonconvex velocity constraints and external disturbances over a directed network. A novel nonlinear distributed control law is proposed to enable all agents converge to an agreement cooperatively while their velocities remain in different nonconvex constraint sets. To measure the effect of external disturbances on consensus, a nonlinear H output function is introduced via maximum and minimum functions. By a model transformation, the original closed-loop system is changed into an equivalent one. And then, the convergence analysis and H performance analysis are completed by utilizing Lyapunov stability theory and robust control theory. In addition, the sufficient constrained H consensus conditions are deduced in the form of matrix inequalities under the assumption of strong connectivity of directed network. Finally, numerical simulations are provided to illustrate the effectiveness of the theoretical results.

Keywords:
Convergence (economics) Constraint (computer-aided design) Discrete time and continuous time Computer science Lyapunov function Nonlinear system Order (exchange) Function (biology) Mathematics Applied mathematics Mathematical optimization Discrete mathematics Physics

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0.33
FWCI (Field Weighted Citation Impact)
35
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0.56
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Citation History

Topics

Distributed Control Multi-Agent Systems
Physical Sciences →  Computer Science →  Computer Networks and Communications
Neural Networks Stability and Synchronization
Physical Sciences →  Computer Science →  Computer Networks and Communications
Mathematical and Theoretical Epidemiology and Ecology Models
Health Sciences →  Medicine →  Public Health, Environmental and Occupational Health
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