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Robust adaptive constrained backstepping flight controller design for re-entry reusable launch vehicle under input constraint:

机译:输入约束下可重入可重复使用运载火箭的鲁棒自适应约束后推飞行控制器设计:

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A nonlinear constrained controller is designed for a reusable launch vehicle during re-entry phase in the presence of model uncertainty, external disturbance, and input constraint, via combining sliding mode control and adaptive backstepping control. Since the complex coupling between the translational and rotational dynamics of reusable launch vehicle, a control-oriented model derived from rotational dynamic is used for controller design. During the virtual control input design procedure, a dynamic robust term is utilized to compensate for the uncertainty. In addition, a filter is applied to handle “explosion of terms” problem during the actual control input design. To reduce the computational burden, adaptive law is used to evaluate the unknown norm bound of the lumped uncertainty. An auxiliary system is constructed to compensate for the input constraint effect. The stability of the closed-loop system is analyzed based on Lyapunov theory. Simulation results demonstrate the validity of the developed cont...
机译:通过组合滑模控制和自适应反推控制,在模型不确定,外部干扰和输入约束存在的情况下,为可重复使用的运载火箭在重入阶段设计了非线性约束控制器。由于可重复使用运载火箭的平移动力学和旋转动力学之间存在复杂的耦合,因此将从旋转动力学派生出来的面向控制的模型用于控制器设计。在虚拟控制输入设计过程中,使用动态鲁棒项来补偿不确定性。此外,在实际控制输入设计过程中,还应用了一个过滤器来处理“术语爆炸”问题。为了减少计算负担,使用自适应法则来评估集总不确定性的未知范数边界。构建辅助系统以补偿输入约束效应。基于李雅普诺夫理论分析了闭环系统的稳定性。仿真结果证明了所开发内容的有效性。

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