Disturbance observer-based fixed-time control for hypersonic morphing vehicles with uncertainties

H. Zhang, P. Wang, G. Tang, W. Bao
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Abstract

The attitude-tracking problem of hypersonic morphing vehicles (HMVs) is investigated in this research. After introducing variable-span wings, the optimal aerodynamic shape is available throughout the entire flight mission. However, the morphing wings cause significant changes in aerodynamic coefficients and mass distribution, challenging the attitude control. Therefore, a complete design procedure for the flight control system is proposed to address the issue. Firstly, the original model and the control-oriented model of HMVs are built. Secondly, in order to eliminate the influence caused by the multisource uncertainties, an adaptive fixed-time disturbance observer combined with fuzzy control theory is established. Thirdly, the fixed-time control method is developed to stabilise hypersonic morphing vehicles based on a multivariable sliding mode manifold. The control input can be obtained directly. Finally, the effectiveness of the proposed method is proved with the help of the Lyapunov theory and simulation results.
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基于扰动观测器的具有不确定性的高超音速变形飞行器固定时间控制
本研究探讨了高超音速变形飞行器(HMV)的姿态跟踪问题。在引入可变跨度机翼后,整个飞行任务期间都可获得最佳气动形状。然而,变形机翼会导致气动系数和质量分布发生显著变化,给姿态控制带来挑战。因此,针对这一问题提出了一套完整的飞行控制系统设计程序。首先,建立 HMV 的原始模型和面向控制的模型。其次,为了消除多源不确定性造成的影响,结合模糊控制理论建立了自适应定时扰动观测器。第三,基于多变量滑模流形,建立了稳定高超音速变形飞行器的定时控制方法。控制输入可以直接获得。最后,借助李亚普诺夫理论和仿真结果证明了所提方法的有效性。
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