Article ID Journal Published Year Pages File Type
6863742 Neurocomputing 2018 41 Pages PDF
Abstract
A novel adaptive neural network (NN) flight control law is developed for the high angle of attack (AOA) longitudinal motion control of an aircraft. Considering the unsteady effects, a longitudinal dynamic model is proposed, which is an uncertain nonstrict-feedback nonlinear system with time-varying distributed delays. Via combining a variable separation technique with the Lyapunov-Krasovskii function method, a robust adaptive NN high AOA flight control scheme is designed. Only the direction of the control gains is needed in the developed controller. Meanwhile, to reduce the computational burden, only two adaptive parameters are needed in the proposed control law. It is proven that the closed-loop system is stable, and all the signals of the closed-loop system are bounded. Finally, simulations are given to confirm the effectiveness of the proposed control law.
Related Topics
Physical Sciences and Engineering Computer Science Artificial Intelligence
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