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The Incorporation of Field Portable Instrumentation Into Human Planetary Surface Exploration

机译:将野外便携式仪器纳入人类行星表面探测

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Field portable instrumentation, such as in situ geochemical analyzers or broader field of view instruments like multispectral imagers or other imaging capabilities, has the potential to dramatically increase the science return of a planetary surface exploration mission. However, more work is needed to determine how emerging portable technologies should be designed and implemented into evolving mission architectures. This work summarizes the efforts of the RIS 4 E (Remote, In Situ and Synchrotron Studies for Science and Exploration) SSERVI (Solar System Exploration Research Virtual Institute) team in investigating how field portable instruments should be including into planning for future exploration EVAs (extravehicular activities). EVA crews of geologists and astronauts tested a variety of portable and handheld technologies at both the December 1974 lava flow, Kilauea Volcano, Hawai'i, and Kilbourne Hole, New Mexico, both of which are planetary analog sites. The timeline data gathered during instrument deployment were then mapped onto EVA timelines used in large‐scale NASA planetary surface exploration analog missions. Results and recommendations for future instrument hardware and software development are discussed, as is the operational framework necessary for incorporating in situ analytical capabilities into future planetary surface exploration.
机译:诸如现场地球化学分析仪之类的便携式现场仪器或诸如多光谱成像仪或其他成像功能之类的更广阔视野的仪器,有可能极大地增加行星表面探测任务的科学回报。但是,需要做更多的工作来确定应如何设计和实现新兴的便携式技术,并将其应用于不断发展的任务体系结构。这项工作总结了RIS 4 E(科学探索的远程,原位和同步加速器研究)SSERVI(太阳能系统探索虚拟研究所)团队在研究如何将便携式仪器纳入未来EVA计划中的努力。活动)。 1974年12月,在夏威夷的基拉韦厄火山和新墨西哥州的基尔本·霍尔这两个都是行星模拟站点的熔岩流中,地质学家和宇航员的EVA团队测试了各种便携式和手持技术。然后,将仪器部署期间收集的时间线数据映射到大型NASA行星地表探测模拟任务中使用的EVA时间线。讨论了未来仪器硬件和软件开发的结果和建议,以及将原位分析功能纳入未来行星地表勘探所需的操作框架。

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