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Trajectories for Flyby Sample Return at Saturn's Moons

机译:Flyby样本返回的轨迹在土星的Moons返回

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Ballistic trajectories are computed which would enable a sample return mission to Titan or Enceladus without capturing, descending, or landing. The low-cost mission concept utilizes a free return trajectory that also involves a close flyby of the moon. This work extends the concept, and related trajectory analysis methodology, previously applied to a Europa mission. Specifically, a broad search algorithm is employed to systematically locate potentially feasible itineraries over an entire Saturn period. High-quality approximate solutions are then optimized to be continuous using high-fidelity dynamics. Techniques and software from the Europa analysis were readily adapted and able to find numerous mission enabling trajectories. A direct mission to Titan is possible with flight time under 16 years and Earth-relative speeds below 11.0 km/sec. The VEEGA option is shown to substantially reduce launch C_3, but flight times exceed 21 years. Unfortunately, an Enceladus mission requires a flight time of 25 years or more, and incurs fairly high relative speeds. Nevertheless, an optimized reference mission is computed.
机译:计算弹道轨迹,这将使样品返回任务到泰坦或Enceladus而不捕获,下降或降落。低成本的使命概念利用自由回报轨迹,该轨迹也涉及月球的紧密飞行。这项工作扩展了概念,以及以前应用于Europa任务的相关轨迹分析方法。具体地,采用广泛的搜索算法在整个土星期间系统地定位可能可行的行程。然后优化高质量的近似解决方案,以使用高保真动态连续。来自Europa分析的技术和软件易于调整和能够找到众多任务促使轨迹。在16岁以下的飞行时间和地球相对速度低于11.0 km / sec的飞行时间,可以进行直接任务。 Veega选项显示为大幅减少启动C_3,但飞行时间超过21年。不幸的是,Enceladus使命需要飞行时间为25年或更长时间,并且相当高的相对速度。尽管如此,计算了优化的参考任务。

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