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Adaptive nonlinear control for spacecraft formation flying with coupled translational and attitude dynamics

机译:耦合平移和姿态动态的航天器形成飞行自适应非线性控制

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In this paper, we address a tracking control problem for the coupled translational and attitude motion of a follower spacecraft relative to a leader spacecraft. Using the vectrix formalism the translational and attitude dynamics of the leader and follower spacecraft are modeled, where the mutual coupling in each spacecraft's translational and attitude motion induced by their gravitational interaction is duly accounted. Using a Lyapunov framework, nonlinear control and adaptation laws are designed that ensure the global asymptotic convergence of the relative translational and attitude position tracking errors, despite the presence of unknown mass and inertia parameters of the leader and follower spacecraft.
机译:在本文中,我们解决了跟随者航天器相对于领导者航天器的耦合平移和姿态运动的跟踪控制问题。使用Vectrix形式主义,领导者和追随者航天器的翻译和姿态动态是建模的,其中每个航天器的相互耦合由其引力互动引起的每个航天器的态度运动进行了适当的核算。使用Lyapunov框架,非线性控制和适应法则设计,确保了相对翻译和姿态位置跟踪误差的全局渐近融合,尽管领导者和追随者航天器的惯性参数存在未知的质量和惯性参数。

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