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Integrated flight/propulsion control for unknown hypersonic flight vehicles systems

机译:未知高超音速飞行器系统的集成飞行/推进控制

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In this paper, a tracking control problem for the unknown longitudinal model of hypersonic flight vehicle is investigated. One remarked advantage is that not only less adjustable parameters are used in the design but also the design is independent of the model. Based on the characteristics of the longitudinal dynamics, The hypersonic flight vehicle system is divided into two subsystems, including an attitude subsystem and a velocity subsystem. The prescribed performance control theory is adopted to construct nonlinear PID controller for velocity subsystem. Then, for attitude subsystems, a novel recursive design procedure is constructed to remove the difficulties of unknown model by integrating mean value theory with a novel bounded estimation approach. Finally, simulation results are provided to demonstrate the effectiveness of the proposed method.
机译:本文研究了高超声速飞行器未知纵向模型的跟踪控制问题。一个显着的优点是,不仅在设计中使用了较少的可调参数,而且设计独立于模型。基于纵向动力学的特征,高超音速飞行器系统分为两个子系统,包括姿态子系统和速度子系统。采用规定的性能控制理论构造速度子系统的非线性PID控制器。然后,对于姿态子系统,构造了一种新颖的递归设计程序,通过将均值理论与新颖的有界估计方法相结合来消除未知模型的困难。最后,通过仿真结果证明了该方法的有效性。

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