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Optimization of the tether-assisted return mission of a guided re-entry capsule

机译:引导式再入舱的绳索辅助回程任务的优化

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This paper presents the mission analysis of a tether-assisted payload retrieval from the International Space Station (ISS). The objective is to assess all relevant phases of such a mission in order to allow a comparison with a conventional mission employing a propulsive deorbitation. The controlled tether deployment procedure and the guided return flight of the released re-entry capsule are optimized. A preferable deployment strategy is identified that allows for favorable entry conditions and low flight loads. The optimal deployment trajectories serve as a basis for an optimal dynamic regulator. This approach is extended towards an adaptive concept, where artificial neural networks are applied to deployment control. For the guidance of the capsule a predictive concept is proposed that is based on the optimal re-entry trajectories identified previously. By applying these concepts, the attainable landing accuracy during return amounts to an average of 5 km, and the application of the tether system exhibits overall system mass advantages. This demonstrates that the tether-assisted return mission is a competitive alternative.
机译:本文介绍了从国际空间站(ISS)检索系链辅助有效载荷的任务分析。目的是评估这种飞行任务的所有相关阶段,以便与采用推进性脱轨的常规飞行任务进行比较。优化了受控的系绳展开程序和释放的重入舱的引导返回飞行。确定了优选的部署策略,该策略允许有利的进入条件和低飞行负载。最佳部署轨迹是最佳动态调节器的基础。这种方法扩展到了自适应概念,其中将人工神经网络应用于部署控制。为了指导胶囊,提出了一种预测概念,该概念基于先前确定的最佳重入轨迹。通过应用这些概念,返航期间可获得的着陆精度平均为5 km,系绳系统的应用显示出总体系统的质量优势。这表明系绳辅助返回任务是一种竞争性选择。

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