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A Flexible Path for Human and Robotic Space Exploration

机译:人类和机器人太空探索的灵活途径

摘要

During the summer of 2009, a flexible path scenario for human and robotic space exploration was developed that enables frequent, measured, and publicly notable human exploration of space beyond low-Earth orbit (LEO). The formulation of this scenario was in support of the Exploration Beyond LEO subcommittee of the Review of U.S. Human Space Flight Plans Committee that was commissioned by President Obama. Exploration mission sequences that allow humans to visit a wide number of inner solar system destinations were investigated. The scope of destinations included the Earth-Moon and Earth-Sun Lagrange points, near-Earth objects (NEOs), the Moon, and Mars and its moons. The missions examined assumed the use of Constellation Program elements along with existing launch vehicles and proposed augmentations. Additionally, robotic missions were envisioned as complements to human exploration through precursor missions, as crew emplaced scientific investigations, and as sample gathering assistants to the human crews. The focus of the flexible path approach was to gain ever-increasing operational experience through human exploration missions ranging from a few weeks to several years in duration, beginning in deep space beyond LEO and evolving to landings on the Moon and eventually Mars.
机译:在2009年夏季,开发了一种用于人类和机器人太空探索的灵活路径方案,该方案可以使人类对低地球轨道(LEO)以外的空间进行频繁,经测量且在公共场合值得关注。这种情况的制定是对由奥巴马总统委托的美国人类太空飞行计划委员会审查的LEO之外探索小组委员会的支持。研究了允许人类访问大量内部太阳系目的地的探索任务序列。目的地范围包括地球月亮和地球太阳拉格朗日点,近地天体(NEO),月球,火星及其卫星。考察的特派团假定与现有的运载火箭一起使用了星座计划要素,并提出了增援方案。此外,可以预见,机器人任务可以通过前体任务,乘员进行的科学研究和人类采样的辅助来补充人类探索。灵活路径方法的重点是通过人类探索任务从持续数周到数年不等的时间来获取不断增长的操作经验,这些任务从LEO以外的深空开始,一直发展到登月,最后到达火星。

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