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Distributed sensor fault diagnosis for a formation of multi-vehicle systems.

Authors :
Qin, Liguo
He, Xiao
Yan, Rui
Deng, Ruiliang
Zhou, Donghua
Source :
Journal of the Franklin Institute. Jan2019, Vol. 356 Issue 2, p791-818. 28p.
Publication Year :
2019

Abstract

Highlights • A new distributed proportion-integration-derivation formation control law is presented. • A distributed observer is developed. A sufficient condition on the existence of the observer is provided based on the algebraic Riccati equation (ARE). • Distributed sensor fault detection and isolation schemes are proposed based on the distributed observer. • A real-time experiment is carried out by using three quadrotors. Abstract In the paper, a distributed sensor fault detection and isolation scheme is presented for a network of second-order integrators. A new distributed control law is developed to achieve formation of the system. By using the integration information of distributed formation errors, the control law improves the robustness of the formation. A distributed observer is then designed in each vehicle based on the closed-loop dynamic model of the vehicle. Each vehicle updates the states of the distributed observer by employing the measurements of itself and the transmitted state estimations from its neighbors. Based on the distributed observer, a distributed fault detection observer and a distributed fault isolation observer are designed. The presented distributed fault detection observer in each vehicle is able to be sensitive to the faults of all vehicles in the system. By using the distributed fault isolation observers, each vehicle is able to be sensitive to the faults of itself, its neighbors and its neighbors' neighbors and to be robust to the faults of other vehicles. Although the fault isolation of the proposed scheme is simple, computation loads of the scheme are lower than the current ones since only the model of the individual vehicle is used. Finally, the effectiveness of the control law and the fault diagnosis scheme is demonstrated by simulations and real-time experiments carried out based on a formation of three quadrotors. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00160032
Volume :
356
Issue :
2
Database :
Academic Search Index
Journal :
Journal of the Franklin Institute
Publication Type :
Periodical
Accession number :
134227701
Full Text :
https://doi.org/10.1016/j.jfranklin.2017.11.020