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Tethered Planetary Capture Maneuvers

机译:系留行星捕获机动

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摘要

A new concept for the application of space tethers in planetary exploration and payload transfer is presented. We propose the deployment of a payload on a spinning tether in a hyperbolic orbit to provide it with a sufficient velocity change so that it is captured in an elliptical orbit at the destination planet. This concept of using tethers for planetary capture is investigated by conducting numerical simulations of a simplified tether system. The tether mass required to prevent rupture of the tether is optimized using numerical and iterative techniques for each of the major planets in the solar system. It is demonstrated that significant mass savings can be achieved when compared to the requirements for chemical propulsion. Finally, it is shown that controlling the tether length during the maneuver can be used to correct errors in the system trajectory for both spinning and nonspinning capture cases.
机译:提出了一种在空间探索中应用空间链的新概念。我们建议在双曲线轨道的旋转绳索上部署有效载荷,以为其提供足够的速度变化,以便将其捕获在目标行星的椭圆轨道上。通过对简化的系链系统进行数值模拟,研究了使用系链进行行星捕获的概念。对于太阳系中的每个主要行星,使用数值和迭代技术优化了防止系绳破裂所需的系绳质量。结果表明,与化学推进相比,可以节省大量的质量。最后,表明了在操纵期间控制系绳长度可用于纠正旋转和非旋转捕获情况下系统轨迹中的错误。

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