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Deadzone compensation based boundary control of a flexible aerial refueling hose with output constraint

机译:具有输出约束的基于空中补偿的基于死区补偿的边界控制

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In this paper, boundary control schemes are designed for a flexible aerial refueling hose subject to input deadzone, output constraint and external disturbances, based on partial differential equations (PDEs). Firstly, a basic boundary control scheme, based on the backstepping method, is proposed to regulate the hose’s vibration. A radial basis function (RBF) neural network is used to handle the effect of the input deadzone. Then we propose a new controller based on a barrier Lyapunov function to prevent constraint violation. It is shown that the states of the system are proven to converge to a small neighborhood of zero, and the output constraint is not violated in the presence of the input deadzone and external distrubances. Finally, simulation results are demonstrated for control performance verification.
机译:在本文中,基于偏微分方程(PDE),设计了一种受输入死区,输出约束和外部干扰影响的柔性空中加油软管边界控制方案。首先,提出了一种基于反推法的基本边界控制方案来调节软管的振动。径向基函数(RBF)神经网络用于处理输入死区的影响。然后,我们提出了一种基于障碍Lyapunov函数的新控制器,以防止约束冲突。结果表明,系统的状态被证明收敛于零的小邻域,并且在存在输入死区和外部扰动的情况下,输出约束不受违反。最后,通过仿真结果验证了控制性能。

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