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Active robust control of uncertainty and flexibility suppression for air-breathing hypersonic vehicles

机译:气动高超声速飞行器不确定性和柔性抑制的主动鲁棒控制

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Inevitable uncertainties and cross couplings between rigid and flexible modes pose huge challenges to control system design for flexible air-breathing hypersonic vehicles. This paper addresses an active robust control scheme that can simultaneously suppress diverse uncertainties and flexible modes using active approaches rather than inherent system robustness. Frequency-domain analysis is conducted to investigate the cross couplings. A novel conclusion lies in that the most significant cross couplings exist between the flexible modes and the rigid-body phugoid modes, followed by the altitude mode. Based on the analysis, a robust control scheme is proposed which consists of a stabilizing control frame and two active control techniques: a nonlinear extended state observer (ESO) and a notch filter. The ESO estimates diverse uncertainties to form a compensation law, and the notch filter is integrated to prevent the flexible modes from being excited by some specific high-frequency signals coming from the ESO estimated values. Thus, both uncertainties and flexible modes can be simultaneously suppressed. A Lyapunov-based stability analysis is conducted for the overall closed-loop system. At last, several representative simulations are conducted to demonstrate the advantages of the proposed active control scheme. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:刚性和柔性模式之间不可避免的不确定性和交叉耦合给柔性进气超音速飞行器的控制系统设计提出了巨大的挑战。本文提出了一种主动鲁棒控制方案,该方案可以使用主动方法而不是固有的系统鲁棒性来同时抑制各种不确定性和灵活模式。进行频域分析以研究交叉耦合。一个新颖的结论是,在弹性模态和刚体蛇形模态之间存在最重要的交叉耦合,其次是高度模态。在分析的基础上,提出了一种鲁棒控制方案,该方案由稳定控制帧和两种主动控制技术组成:非线性扩展状态观测器(ESO)和陷波滤波器。 ESO估计各种不确定性以形成补偿定律,并且陷波滤波器被集成以防止灵活模式被来自ESO估计值的某些特定高频信号激发。因此,可以同时抑制不确定性和灵活模式。对整个闭环系统进行基于Lyapunov的稳定性分析。最后,进行了几个有代表性的仿真,以证明所提出的主动控制方案的优点。 (C)2015 Elsevier Masson SAS。版权所有。

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