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Simulation analysis of hypersonic vehicle flight control based on back-stepping and dynamic inversion

机译:基于反步和动态反演的高超音速飞行器飞行控制仿真分析

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Flight control technology of hypersonic vehicles is very difficult because hypersonic vehicles have many features, such as strong nonlinearity, variable coupling, parameter variation, and uncertainties. In this paper, based on the generic hypersonic vehicle longitudinal model, two flight control methods based on back-stepping and dynamic inversion control respectively are simulated and analyzed. For the back-stepping based control, the back-stepping method is introduced to design control inputs for subsystems of the flight model. For the dynamic inversion based control, an inversion system is obtained by using feed-back linearization, and then controllers are designed by using linear control methods. Simulation of the hypersonic vehicle longitudinal model and two control methods are carried out in this paper. The tracking control performances of velocity and altitude of the hypersonic vehicle are verified. Then the two control methods are analyzed and evaluated in terms of control performances and engineering practicability. The back-stepping based control has high response speed and precision, and it is very suitable for on-line control. The dynamic inversion based control has a stable dynamic performance and better portability.
机译:高超声速飞行器的飞行控制技术非常困难,因为高超声速飞行器具有许多特性,例如强非线性,可变耦合,参数变化和不确定性。本文在通用高超声速飞行器纵向模型的基础上,分别仿真和分析了两种基于反步控制和动态反演控制的飞行控制方法。对于基于后退的控制,引入了后退方法来设计飞行模型子系统的控制输入。对于基于动态逆变的控制,通过使用反馈线性化获得逆变系统,然后使用线性控制方法设计控制器。本文进行了高超声速飞行器纵向模型的仿真和两种控制方法。验证了高超声速飞行器的速度和高度的跟踪控制性能。然后根据控制性能和工程实用性对两种控制方法进行了分析和评价。基于反步的控制具有较高的响应速度和精度,非常适用于在线控制。基于动态反转的控制具有稳定的动态性能和更好的可移植性。

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