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Modeling and Analysis for a Generic Hypersonic Vehicle

机译:通用超音速飞行器的建模与分析

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The non-standard dynamics characteristics of hypersonic vehicles, the aerodynamic effects together with the wide range of speed and altitude during operation make modeling and control of these vehicles highly challenging. Modeling and analysis of hypersonic vehicles are important for control and navigation system design. A six degrees of freedom simulation model of the wing cone generic hypersonic vehicle (GHV) was developed considering time-varying mass property and thrust vector. The longitudinal/lateral-directional static stability, the aerodynamic characteristics of lift-drag ratio, the flight trimming and the linearization of the nonlinear model in full envelope were analyzed, concluding the static stability characteristics of the GHV under all flight conditions. The lift coefficient and lift-drag ratio are smaller than conventional aircraft's. The flight modes’ features and variation regularities were presented in in-depth study. Simulation results of the model show that longitudinal phugoid/short-period modes are the same as conventional vehicles’ while there are a number of new lateral-directional modes. Stability of all modes is closely related to the mass variation. The model and analysis results can be used to do further research on navigation, guidance and control system design and other key technologies for the GHV.
机译:高超音速飞行器的非标准动力学特性,空气动力效应以及运行过程中广泛的速度和高度范围,使这些飞行器的建模和控制极具挑战性。高超音速飞行器的建模和分析对于控制和导航系统设计很重要。考虑时变质量特性和推力矢量,建立了翼锥通用高超音速飞行器(GHV)的六自由度仿真模型。分析了全包络线模型的纵向/横向静态稳定性,升阻比空气动力学特性,飞行修整和非线性模型的线性化,得出了GHV在所有飞行条件下的静态稳定性特征。升力系数和升阻比要小于传统飞机。在深入研究中介绍了飞行模式的功能和变化规律。该模型的仿真结果表明,纵向/短周期模式与常规车辆相同,但是有许多新的横向模式。所有模式的稳定性都与质量变化密切相关。该模型和分析结果可用于对GHV的导航,制导和控制系统设计及其他关键技术进行进一步研究。

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