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DO-Based Adaptive Consensus Control for Multiple MUAVs With Dynamic Constraints

delete2023-04-01
delete5
PRE
AI
B
Bin Yang
H
Hongyi Li *
D
Deyin Yao
W
Wei Meng
DOI:10.1109/TSMC.2022.3213249delete
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Abstract

Abstract

En 中文
This article investigates the adaptive consensus control problem for a group of multirotor unmanned aerial vehicles (MUAVs) subject to dynamic state constraints and unmatched external disturbances. An adaptive inner-outer loop controller is devised based on the backstepping method, where the issue of explosion of complexity is solved via a first-order sliding-mode differentiator. By introducing a barrier function-based state transformation technique into the outer loop controller design, the dynamic constraints covering different types of time-varying state constraints can be addressed without reconfiguring the controller structure. Meanwhile, a neural-network-based disturbance observer is constructed to estimate the external disturbances. Consequently, the applicability and robustness of controller are improved, such that the position tracking control can be implemented in severe environments. Moreover, the inner loop controller is established by virtue of a distributed sliding-mode estimator so as the consensus control for attitude systems of multiple MUAVs can be realized rapidly. Finally, a simulation example is presented to demonstrate the validity and superiority of the proposed control strategy.
Keywords:
Adaptive consensus control
disturbance observer (DO)
dynamic state constraints
multirotor unmanned aerial vehicle (MUAV)

Journal

IEEE Transactions on Cybernetics cover
IEEE Transactions on Cybernetics
IF:
10.5
Papers:
1.1W
Citations:
5.0W

Organization

B
Beihang University
Scholars:
5.2W
Papers: 4.1W
Citations: 37
G
guangdong university of technology
Scholars:
2.9W
Papers: 2.0W
Citations: 36