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首页> 外文期刊>Journal of guidance, control, and dynamics >Opportunities for Ballistic Soft Landing in Binary Asteroids
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Opportunities for Ballistic Soft Landing in Binary Asteroids

机译:二元小行星弹道式软着陆的机会

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Remote sensing instrumentation onboard missions to asteroids is paramount to address many of the fundamental questions in modern planetary science. Yet in situ surface measurements provide the "ground truth" necessary to validate and enhance the science return of these missions. Nevertheless, because of the dynamical uncertainties associated with the environment near these objects, most missions spend long periods of times stationed afar. Small landers can be used much more daringly, however, and thus have already been identified as valuable assets for in situ exploration. This paper explores the potential for ballistic landing opportunities enabled by the natural dynamics found in binary asteroid systems. The dynamics near a binary asteroid are modeled by means of the circular restricted three-body problem, which provides a reasonable representation of a standard binary system. Natural landing trajectories are then sought that allow for a deployment from the exterior region and touchdown with minimum localvertical velocity. The results show that, although landing on the main body of the system would require an effective landing system capable to dissipate excess of energy and avoid bouncing off the asteroid, the smaller companion offers the prospect of simple ballistic landing opportunities.
机译:对小行星执行任务的遥感仪器对于解决现代行星科学中的许多基本问题至关重要。然而,原位地表测量提供了验证和增强这些任务的科学回报所必需的“地面真理”。然而,由于与这些物体附近的环境有关的动态不确定性,大多数特派团在远处停留了很长时间。然而,小型着陆器的使用更为大胆,因此已被确定为现场勘探的宝贵资产。本文探讨了由二元小行星系统中发现的自然动力学实现的弹道登陆机会的潜力。通过圆形受限三体问题对二元小行星附近的动力学进行建模,该问题提供了标准二元系统的合理表示。然后寻找自然的着陆轨迹,以允许以最小的局部垂直速度从外部区域展开和着陆。结果表明,尽管降落在系统主体上将需要一个有效的着陆系统,该系统必须能够消散过多的能量并避免从小行星弹起,但较小的同伴可提供简单的弹道着陆机会。

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