A theoretical framework of nonlinear flight control for a flexible air-breathing hypersonic vehicle(FAHV)is proposed in this paper.In order to suppress the system uncertainty and external disturbance,an uncertainty an...A theoretical framework of nonlinear flight control for a flexible air-breathing hypersonic vehicle(FAHV)is proposed in this paper.In order to suppress the system uncertainty and external disturbance,an uncertainty and disturbance estimator(UDE)based back-stepping control strategy is designed for a dynamic state-feedback controller to provide stable velocity and altitude tracking.Firstly,the longitudinal dynamics of FAHV is simplified into a closure loop form with lumped uncertainty and disturbance.Then the UDE is applied to estimate the lumped uncertainty and disturbance for the purpose of control input compensation.While a nonlinear tracking differentiator is introduced to solve the problem of“explosion of term”in the back-stepping control.The stability of the UDE-based control strategy is proved by using Lyapunov stability theorem.Finally,simulation results are presented to demonstrate the capacity of the proposed control strategy.展开更多
为解决船舶在外界扰动和模型不确定条件下自动靠泊控制精度降低的问题,基于不确定和扰动估计器(uncertainty and disturbance estimator,UDE),提出一种自适应反步控制方法。利用指令滤波器,抑制传统反步法虚拟控制求导产生的微分爆炸现...为解决船舶在外界扰动和模型不确定条件下自动靠泊控制精度降低的问题,基于不确定和扰动估计器(uncertainty and disturbance estimator,UDE),提出一种自适应反步控制方法。利用指令滤波器,抑制传统反步法虚拟控制求导产生的微分爆炸现象。通过设计辅助系统,补偿指令滤波器误差,达到三自由度船舶自动靠泊控制的目的。通过Lyapunov理论证明UDE与控制器相结合的闭环系统的稳定性和信号的一致最终有界性。仿真实验表明,所设计的控制器能较准确地估计复杂扰动,并保证船舶到达期望的位置和艏向。展开更多
基金Supported by National Natural Science Foundation of China(11672235)。
文摘A theoretical framework of nonlinear flight control for a flexible air-breathing hypersonic vehicle(FAHV)is proposed in this paper.In order to suppress the system uncertainty and external disturbance,an uncertainty and disturbance estimator(UDE)based back-stepping control strategy is designed for a dynamic state-feedback controller to provide stable velocity and altitude tracking.Firstly,the longitudinal dynamics of FAHV is simplified into a closure loop form with lumped uncertainty and disturbance.Then the UDE is applied to estimate the lumped uncertainty and disturbance for the purpose of control input compensation.While a nonlinear tracking differentiator is introduced to solve the problem of“explosion of term”in the back-stepping control.The stability of the UDE-based control strategy is proved by using Lyapunov stability theorem.Finally,simulation results are presented to demonstrate the capacity of the proposed control strategy.
文摘为解决船舶在外界扰动和模型不确定条件下自动靠泊控制精度降低的问题,基于不确定和扰动估计器(uncertainty and disturbance estimator,UDE),提出一种自适应反步控制方法。利用指令滤波器,抑制传统反步法虚拟控制求导产生的微分爆炸现象。通过设计辅助系统,补偿指令滤波器误差,达到三自由度船舶自动靠泊控制的目的。通过Lyapunov理论证明UDE与控制器相结合的闭环系统的稳定性和信号的一致最终有界性。仿真实验表明,所设计的控制器能较准确地估计复杂扰动,并保证船舶到达期望的位置和艏向。