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Stochastic H&null Robust Decentralized Tracking Control of Large-Scale Team Formation UAV Network System with Time-Varying Delay and Packet Dropout under Interconnected Couplings and Wiener Fluctuations
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Stochastic H&null Robust Decentralized Tracking Control of Large-Scale Team Formation UAV Network System with Time-Varying Delay and Packet Dropout under Interconnected Couplings and Wiener Fluctuations

Min-Yen Lee, Bor-Sen Chen, Cheng-Yu TsaiChih-Lyang Hwang
IEEE Access
2021

摘要

Centralized control Control design Couplings decentralized stochastic robust H&null fuzzy tracking control event-triggered control Optimization Smart cities stochastic control Stochastic processes Unmanned aerial vehicle (UAV) networked control system (NCS) Unmanned aerial vehicles virtual structure formation control Computer Science (all) Materials Science (all) Engineering (all)
In this article, a robust decentralized tracking control scheme for a large-scale unmanned aerial vehicle (UAV) formation team networked control system (NCS) is proposed to overcome a non-scalable or even infeasible design problem due to high computational complexity by the centralized control. At the outset, wind external disturbance, intrinsic fluctuation, coupling from other UAV subsystems, time-varying network-induced delay and packet dropout are taken into account in the design procedure of large-scale team formation UAV network system. Moreover, an event-triggered mechanism is embedded in NCS to reduce the number of transmitted control signals to save the network traffic especially for a large-scale team formation network of UAVs. To effectively reduce the above uncertainties, a robust H&null decentralized tracking controller is proposed for the large-scale UAV team formation NCS which is constructed by virtual leader-follower tracking network of UAV subsystems. By the Takagi-Sugeno (T-S) fuzzy interpolation method, the H&null robust virtual leader-follower decentralized tracking control design problem of the large-scale UAV team formation NCS is transformed to an independent Hamilton-Jacobin inequality (HJI)-constrained optimization problem for each UAV, which is effectively solved by a linear matrix inequality (LMI)-constrained optimization problem. Finally, a large-scale UAV team formation example of 25 UAVs is proposed to validate the effectiveness of the proposed robust decentralized tracking controller of large-scale UAV team formation NCS.

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https://doi.org/10.1109/ACCESS.2021.3065127檢視
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