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Optimal feedback control of the deployment of a tethered subsatellite subject to perturbations

机译:受到干扰的拴系卫星的部署的最佳反馈控制

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This paper presents the nonlinear optimal feedback control for the deployment process of a tethered subsatellite model, which involves not only the usually addressed in-plane motion, but also the out-of-plane motion. The model also takes the uncertainties in the mass parameter, the perturbations in initial states, and the external disturbance forces into consideration from an engineering point of view. The proposed controller is on the basis of a shrinking horizon and online grid adaptation scheme. Even though the proposed feedback law is not analytically explicit, it is easy to determine it by using a rapid recomputation of the open-loop optimal control, which generates the initial guesses for controls by interpolating the results from the previous computation. The case studies in the paper well demonstrate the effectiveness, robustness, and dominant real-time merits of the proposed controller.
机译:本文提出了用于拴系亚卫星模型部署过程的非线性最优反馈控制,该控制不仅涉及通常处理的平面内运动,而且还涉及平面外运动。该模型还从工程角度考虑了质量参数,初始状态的扰动和外部干扰力的不确定性。所提出的控制器基于缩小的视野和在线网格自适应方案。即使所提出的反馈定律在分析上不是明确的,也可以通过快速重新计算开环最优控制来确定它,通过对先前计算的结果进行插值来生成控制的初始猜测。本文中的案例研究很好地证明了所提出控制器的有效性,鲁棒性和实时优势。

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