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Optimal Predictive Control for Three-Degree-of-Freedom Hypersonic Flutter Model

机译:三自由度高超音速颤振模型的最优预测控制

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摘要

This paper presents an optimal predictive control method to suppress the hypersonic airfoil flutter and the airfoil flutter damage. Firstly, a three-degree-of-freedom (3DOF) airfoil flutter model is established and the airfoil flutter responses are analyzed in the Hopf bifurcation points. Subsequently, the optimal predictive control is employed to control the airfoil flutter by optimizing a cost function. In addition, the asymptotical stability of the airfoil flutter system is achieved. Then, several simulations are carried out to illustrate the effectiveness of the proposed flutter suppression problem for hypersonic flight vehicles.
机译:本文提出了一种抑制超音速翼型颤振和翼型颤振损伤的最优预测控制方法。首先,建立了三自由度(3DOF)翼型颤振模型,并在霍普夫分叉点分析了翼型颤振响应。随后,通过优化成本函数,采用最佳预测控制来控制机翼颤动。另外,获得了翼型扑动系统的渐近稳定性。然后,进行了几次仿真,以说明所提出的颤振抑制问题对高超音速飞行器的有效性。

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