Abstract:
This article investigates the fault-tolerant formation control (FTFC) problem for networked fixed-wing unmanned aerial vehicles (UAVs) against faults. To constrain the di...Show MoreMetadata
Abstract:
This article investigates the fault-tolerant formation control (FTFC) problem for networked fixed-wing unmanned aerial vehicles (UAVs) against faults. To constrain the distributed tracking errors of follower UAVs with respect to neighboring UAVs in the presence of faults, finite-time prescribed performance functions (PPFs) are developed to transform the distributed tracking errors into a new set of errors by incorporating user-specified transient and steady-state requirements. Then, the critic neural networks (NNs) are developed to learn the long-term performance indices, which are used to evaluate the distributed tracking performance. Based on the generated critic NNs, actor NNs are designed to learn the unknown nonlinear terms. Moreover, to compensate for the reinforcement learning errors of actor-critic NNs, nonlinear disturbance observers (DOs) with skillfully constructed auxiliary learning errors are developed to facilitate the FTFC design. Furthermore, by using the Lyapunov stability analysis, it is shown that all follower UAVs can track the leader UAV with predesigned offsets, and the distributed tracking errors are finite-time convergent. Finally, comparative simulation results are presented to show the effectiveness of the proposed control scheme.
Published in: IEEE Transactions on Neural Networks and Learning Systems ( Volume: 35, Issue: 3, March 2024)
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- IEEE Keywords
- Index Terms
- Adaptive Control ,
- Unmanned Aerial Vehicles ,
- Formation Control ,
- Fault-tolerant Control ,
- Unmanned Aerial Vehicles Networks ,
- Fixed-wing Unmanned Aerial Vehicles ,
- Adaptive Fault-tolerant Control ,
- Neural Network ,
- Comparable Results ,
- Control Strategy ,
- Control Problem ,
- Presence Of Defects ,
- Error Learning ,
- Unknown Terms ,
- Comparative Method ,
- Small Region ,
- Design Parameters ,
- Control Input ,
- Error Distribution ,
- Symmetric Matrix ,
- Transient Performance ,
- Fractional Operator Of Order ,
- Longitudinal Motion ,
- Formation Flight ,
- Multiple Unmanned Aerial Vehicles ,
- Steady-state Performance ,
- Error Constraint ,
- Control Architecture ,
- Unmanned Aerial Vehicle Model ,
- Radial Basis Function
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Adaptive Control ,
- Unmanned Aerial Vehicles ,
- Formation Control ,
- Fault-tolerant Control ,
- Unmanned Aerial Vehicles Networks ,
- Fixed-wing Unmanned Aerial Vehicles ,
- Adaptive Fault-tolerant Control ,
- Neural Network ,
- Comparable Results ,
- Control Strategy ,
- Control Problem ,
- Presence Of Defects ,
- Error Learning ,
- Unknown Terms ,
- Comparative Method ,
- Small Region ,
- Design Parameters ,
- Control Input ,
- Error Distribution ,
- Symmetric Matrix ,
- Transient Performance ,
- Fractional Operator Of Order ,
- Longitudinal Motion ,
- Formation Flight ,
- Multiple Unmanned Aerial Vehicles ,
- Steady-state Performance ,
- Error Constraint ,
- Control Architecture ,
- Unmanned Aerial Vehicle Model ,
- Radial Basis Function
- Author Keywords