Iterative Learning Control of a Nonlinear Aeroelastic System despite Gust Load

Xing Zhi Xu, Ya Kui Gao, Wei Guo Zhang

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4 引用 (Scopus)

摘要

The development of a control strategy appropriate for the suppression of aeroelastic vibration of a two-dimensional nonlinear wing section based on iterative learning control (ILC) theory is described. Structural stiffness in pitch degree of freedom is represented by nonlinear polynomials. The uncontrolled aeroelastic model exhibits limit cycle oscillations beyond a critical value of the free-stream velocity. Using a single trailing-edge control surface as the control input, a ILC law under alignment condition is developed to ensure convergence of state tracking error. A novel Barrier Lyapunov Function (BLF) is incorporated in the proposed Barrier Composite Energy Function (BCEF) approach. Numerical simulation results clearly demonstrate the effectiveness of the control strategy toward suppressing aeroelastic vibration in the presence of parameter uncertainties and triangular, sinusoidal, and graded gust loads.

源语言英语
文章编号237804
期刊International Journal of Aerospace Engineering
2015
DOI
出版状态已出版 - 2015

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