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Distant retrograde orbits and the asteroid hazard

机译:遥远的逆行轨道和小行星危险

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摘要

Distant Retrograde Orbits (DROs) gained a novel wave of fame in space mission design because of their numerous advantages within the framework of the US plans for bringing a large asteroid sample in the vicinity of the Earth as the next target for human exploration. DROs are stable solutions of the three-body problem that can be used whenever an object, whether of natural or artificial nature, is required to remain in the neighborhood of a celestial body without being gravitationally captured by it. As such, they represent an alternative option to Halo orbits around the collinear Lagrangian points L-1 and L-2. Also known under other names (e.g., quasi-satellite orbits, cis-lunar orbits, family-f orbits) these orbital configurations found interesting applications in several mission profiles, like that of a spacecraft orbiting around the small irregularly shaped satellite of Mars Phobos or the large Jovian moon Europa. In this paper a basic explanation of the DRO dynamics is presented in order to clarify some geometrical properties that characterize them. Their accessibility is then discussed from the point of view of mission analysis under different assumptions. Finally, their relevance within the framework of the present asteroid hazard protection programs is shown, stressing the significant increase in warning time they would provide in the prediction of impactors coming from the direction of the Sun.
机译:遥远的逆行轨道(DROS)在太空任务设计中获得了一种新的名声,因为它们在美国计划的框架内具有许多优势,用于将地球附近带来大型小行星样本作为下一个人类勘探的目标。 DROS是一种稳定的解决方案,其三体问题可以使用,每当物体,无论是自然还是人为的,无论是自然还是人为的,都需要保留在天体的附近而不被其引力捕获。因此,它们代表光环拉格朗日点L-1和L-2周围Halo轨道的替代选择。在其他名称(例如,准卫星轨道,CIS-Lunar轨道,家庭-F轨道)下也已知这些轨道配置在几个任务概况中发现了有趣的应用,类似于航天器围绕火星的小型不规则形状的卫星或大的jovian moon欧罗巴。在本文中,提出了对DRO动力学的基本说明,以澄清一些表征它们的几何特性。然后从不同假设下的任务分析的角度讨论了他们的可访问性。最后,示出了它们在目前的小行星危险保护计划的框架内的相关性,强调了警告时间的显着增加,他们将提供来自太阳的方向的撞击器的预测。

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