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Leader-following consensus for high-order stochastic multi-agent systems via dynamic output feedback control

You, Xiu; Hua, Chang-Chun; Yu, Hong-Nian; Guan, Xin-Ping

Authors

Xiu You

Chang-Chun Hua

Xin-Ping Guan



Abstract

This paper studies the leader-following consensus problem for high-order stochastic nonlinear multi-agent systems. Each agent is in the strict feedback form with nonlinear functions in drift and diffusion terms and admitting time-varying incremental rates. A novel distributed observer-type consensus protocol is proposed based only on the relative output measurements of neighboring agents. The dynamic gains in controller are designed to compensate for the time-varying coefficients of nonlinear functions. By using appropriate state transformation, it is proved that the 1th moment exponential leader-following consensus is guaranteed by the proposed protocol. Different from some existing approaches, the proposed method only requires the output information of neighboring agents to be shared and does not need the observers’ full state variables to be transmitted, thus the network bandwidth is saved. In addition, the controller is constructed without using the traditional backstepping method, which makes the design procedure simple and convenient for use. Finally, a simulation example is given to illustrate the effectiveness of the theoretical results.

Citation

You, X., Hua, C.-C., Yu, H.-N., & Guan, X.-P. (2019). Leader-following consensus for high-order stochastic multi-agent systems via dynamic output feedback control. Automatica, 107, 418-424. https://doi.org/10.1016/j.automatica.2019.06.006

Journal Article Type Article
Acceptance Date Jun 2, 2019
Online Publication Date Jun 26, 2019
Publication Date 2019-09
Deposit Date Oct 28, 2019
Publicly Available Date Jun 27, 2020
Journal Automatica
Print ISSN 0005-1098
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 107
Pages 418-424
DOI https://doi.org/10.1016/j.automatica.2019.06.006
Keywords Control and Systems Engineering; Electrical and Electronic Engineering
Public URL http://researchrepository.napier.ac.uk/Output/2246951

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