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Longitudinal coordination control of hypersonic vehicle based on dynamic equation

机译:基于动力学方程的高超音速飞行器纵向协调控制

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摘要

The complex nonlinearities of hypersonic vehicles can lead to strong couplings between variables, which will bring great challenges to flight control. For this purpose, this paper proposes a novel coupling analysis method for the longitudinal dynamics of a hypersonic vehicle, based on which a coordination controller is designed to reduce the negative effects of the couplings. Initially, according to the coupling characteristics of the hypersonic vehicle, a novel coupling analysis method based on the dynamic equations is proposed to describe the dynamic coupling relationships between variables. Then, a coordination control scheme is designed by combining sliding mode control and the dynamic coupling matrix obtained. Subsequently, the asymptotic stability of the closed-loop system is proved by using Lyapunov theory, and the simulation results are given to verify the effectiveness of the proposed dynamic coupling matrix-based coordination control.
机译:高超声速飞行器的复杂非线性会导致变量之间的强耦合,这将给飞行控制带来巨大挑战。为此,本文提出了一种用于高超音速飞行器纵向动力学的新型耦合分析方法,在此基础上设计了一种协调控制器,以减少耦合的负面影响。最初,根据高超音速飞行器的耦合特性,提出了一种基于动力学方程的新型耦合分析方法,以描述变量之间的动态耦合关系。然后,通过组合滑模控制和所获得的动态耦合矩阵,设计了一种协调控制方案。随后,利用李雅普诺夫理论证明了闭环系统的渐近稳定性,并给出了仿真结果,验证了所提出的基于动态耦合矩阵的协调控制的有效性。

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