Control-oriented Modeling for Air-breathing Hypersonic Vehicle Using Parameterized Configuration Approach |
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Authors: | LI Huifeng LIN Ping XU Dajun |
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Institution: | School of Astronautics, Beijing University of Aeronautics and Astronautics, Beijing 100191, China |
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Abstract: | This article presents a parameterized configuration modeling approach to develop a 6 degrees of freedom (DOF) rigid-body model for air-breathing hypersonic vehicle (AHV). The modeling process involves the parameterized configuration design, inviscous hypersonic aerodynamic force calculation and scramjet engine modeling. The parameters are designed for airframe-propulsion integration configuration, the aerodynamic force calculation is based on engineering experimental methods, and the engine model is acquired from gas dynamics and quasi-one dimensional combustor calculations. Multivariate fitting is used to obtain analytical equations for aerodynamic force and thrust. Furthermore, the fitting accuracy is evaluated by relative error (RE). Trim results show that the model can be applied to the investigation of control method for AHV during the cruise phase. The modeling process integrates several disciplines such as configuration design, aerodynamic calculation, scramjet modeling and control method. Therefore the modeling method makes it possible to conduct AHV aerodynamics/propulsion/control integration design. |
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Keywords: | flight dynamics hypersonic AHV model parameterized configuration design aerodynamics/propulsion integration |
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