Abstract
An adaptive disturbance rejection algorithm is proposed for carrier landing system in the final-approach. The carrier-based aircraft dynamics and the linearized longitudinal model under turbulence conditions in the final-approach are analyzed. A stable adaptive control scheme is developed based on LDU decomposition of the high-frequency gain matrix, which ensures closed-loop stability and asymptotic output tracking. Finally, simulation studies of a linearized longitudinal-directional dynamics model are conducted to demonstrate the performance of the adaptive scheme.
Cite
CITATION STYLE
Wang, X., Chen, X., & Wen, L. (2016). Adaptive Disturbance Rejection Control for Automatic Carrier Landing System. Mathematical Problems in Engineering, 2016. https://doi.org/10.1155/2016/7345056
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