
Consensus of uncertain multi-agent systems with input delay and disturbances
Author(s) -
L. Susana Ramya,
R. Sakthivel,
Yong Ren,
Yongdo Lim,
A. Leelamani
Publication year - 2019
Publication title -
cognitive neurodynamics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.83
H-Index - 41
eISSN - 1871-4099
pISSN - 1871-4080
DOI - 10.1007/s11571-019-09525-0
Subject(s) - control theory (sociology) , computer science , controller (irrigation) , scheme (mathematics) , kronecker product , multi agent system , disturbance (geology) , robust control , control (management) , control system , mathematics , kronecker delta , artificial intelligence , engineering , mathematical analysis , paleontology , physics , electrical engineering , quantum mechanics , agronomy , biology
In this paper, the problem of robust consensus for multi-agent systems affected by external disturbances is discussed. A novel consensus control is developed by using a feedback controller based on disturbance rejection and Smith predictor scheme. Specifically, the disturbance rejection performance of the uncertain multi-agent systems is improved according to the estimation of equivalent-input-disturbance and the effect of time delay in the control system is reduced via Smith predictor scheme by shifting the delay outside the feedback loop. Furthermore, by combining Lyapunov theory, matrix inequality techniques and properties of Kronecker product, a robust feedback controller for each agent is designed such that the desired consensus of the uncertain multi-agent systems affected by external disturbances can be ensured. Finally, to illustrate the validity of the designed control scheme, two numerical examples with simulation results are provided.