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Real-time science operations to support a lunar polar volatiles rover mission

机译:支持月球极地挥发物漫游者任务的实时科学操作

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摘要

Future human exploration of the Moon will likely rely on in situ resource utilisation (ISRU) to enable long duration lunar missions. Prior to utilizing ISRU on the Moon, the natural resources (in this case lunar volatiles) must be identified and characterized, and ISRU demonstrated on the lunar surface. To enable future uses of ISRU, NASA and the CSA are developing a lunar rover payload that can (1) locate near subsurface volatiles, (2) excavate and analyze samples of the volatile-bearing regolith, and (3) demonstrate the form, extract-ability and usefulness of the materials. Such investigations are important both for ISRU purposes and for understanding the scientific nature of these intriguing lunar volatile deposits. Temperature models and orbital data suggest near surface volatile concentrations may exist at briefly lit lunar polar locations outside persistently shadowed regions. A lunar rover could be remotely operated at some of these locations for the ~2-14 days of expected sunlight at relatively low cost. Due to the limited operational time available, both science and rover operations decisions must be made in real time, requiring immediate situational awareness, data analysis, and decision support tools. Given these constraints, such a mission requires a new concept of operations. In this paper we outline the results and lessons learned from an analog field campaign in July 2012 which tested operations for a lunar polar rover concept. A rover was operated in the analog environment of Hawaii by an off-site Flight Control Center, a rover navigation center in Canada, a Science Backroom at NASA Ames Research Center in California, and support teams at NASA Johnson Space Center in Texas and NASA Kennedy Space Center in Florida. We find that this type of mission requires highly efficient, real time, remotely operated rover operations to enable low cost, scientifically relevant exploration of the distribution and nature of lunar polar volatiles. The field demonstration illustrated the need for science operations personnel in constant communications with the flight mission operators and the Science Backroom to provide immediate and continual science support and validation throughout the mission. Specific data analysis tools are also required to enable immediate data monitoring, visualization, and decision making. The field campaign demonstrated that this novel methodology of real-time science operations is possible and applicable to providing important new insights regarding lunar polar volatiles for both science and exploration.
机译:未来人类对月球的探索将可能依赖于原位资源利用(ISRU)来实现长时间的月球任务。在月球上使用ISRU之前,必须先识别和表征自然资源(在这种情况下为月球挥发物),并在月球表面演示ISRU。为了使ISRU将来能够使用,NASA和CSA正在开发月球车有效载荷,该载荷可以(1)定位在地下挥发物附近,(2)挖掘和分析带有挥发物的重石的样品,(3)演示其形式,提取材料的能力和实用性。这样的研究对于ISRU的目的和理解这些引人入胜的月球挥发性沉积物的科学性质都是重要的。温度模型和轨道数据表明,在持续阴影区域之外的短暂点燃的月球极地位置,可能存在近地表挥发物浓度。在某些地点,可以以相对较低的成本远程操纵月球车约2-14天。由于可用的操作时间有限,因此科学和漫游车的操作决策都必须实时做出,需要立即了解情况,数据分析和决策支持工具。考虑到这些限制,这样的任务需要新的作战概念。在本文中,我们概述了从2012年7月的模拟野战中获得的结果和经验教训,该运动测试了月球极地漫游者概念的运行情况。在夏威夷的模拟环境中,一个流动站由一个场外飞行控制中心,一个加拿大的流动站导航中心,位于加利福尼亚的NASA Ames研究中心的科学后台以及位于德克萨斯州的NASA约翰逊航天中心和NASA肯尼迪的支持小组操作佛罗里达太空中心。我们发现,这种类型的任务需要高效,实时,远程流动的漫游车操作,以实现低成本,科学相关的月球极地挥发物分布和性质的探索。现场演示表明,科学运营人员需要与飞行任务运营商和“科学后台”保持不断沟通,以在整个任务期间提供即时和持续的科学支持和验证。还需要特定的数据分析工具来立即进行数据监视,可视化和决策。野外活动表明,这种新颖的实时科学操作方法是可行的,可用于为科学和探索提供有关月球极地挥发物的重要新见解。

著录项

  • 来源
    《Advances in space research》 |2015年第10期|2427-2437|共11页
  • 作者单位

    NASA Ames Research Center, Division of Space Sciences and Astrobiology, Moffett Field, CA 94035, USA;

    NASA Ames Research Center, Division of Space Sciences and Astrobiology, Moffett Field, CA 94035, USA;

    NASA Ames Research Center, Division of Space Sciences and Astrobiology, Moffett Field, CA 94035, USA;

    NASA Johnson Space Center, Houston, TX 77058, USA;

    NASA Ames Research Center, Division of Space Sciences and Astrobiology, Moffett Field, CA 94035, USA;

    NASA Ames Research Center, Moffett Field, CA 94035, USA;

    BAER Institute, Sonoma, CA 95476, USA;

    NASA Ames Research Center, Moffett Field, CA 94035, USA;

    NASA Ames Research Center, Moffett Field, CA 94035, USA;

    NASA Ames Research Center, Division of Space Sciences and Astrobiology, Moffett Field, CA 94035, USA;

    NASA Ames Research Center, Division of Space Sciences and Astrobiology, Moffett Field, CA 94035, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Moon; Volatiles; Rover; Missions;

    机译:月亮;挥发物;漫游者任务;

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