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首页> 外文期刊>Acta astronautica >Testing Mars Exploration Rover-inspired operational strategies for semi-autonomous rovers on the moon Ⅱ: The GeoHeuristic operational Strategies Test in Alaska
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Testing Mars Exploration Rover-inspired operational strategies for semi-autonomous rovers on the moon Ⅱ: The GeoHeuristic operational Strategies Test in Alaska

机译:测试火星探索漫游车启发的月球半自动漫游器的作战策略Ⅱ:阿拉斯加的GeoHeuristic作战策略测试

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摘要

We used MER-derived semi-autonomous rover science operations strategies to determine best practices suitable for remote semi-autonomous lunar rover geology. Two field teams studied two glacial moraines as analogs for potential ice-bearing lunar regolith. At each site a Rover Team commanded a human rover to execute observations based on common MER sequences; the resulting data were used to identify and characterize targets of interest. A Tiger Team followed the Rover Team using traditional terrestrial field methods, and the results of the two teams were compared. Narrowly defined goals that can be addressed using cm-scale or coarser resolution may be met sufficiently by the operational strategies adapted from MER survey mode. When reconnaissance is the primary goal, the strategies tested are necessary but not sufficient. Further, there may be a set of optimal observations for such narrowly defined, hypothesis-driven science goals, such that collecting further data would result in diminishing returns. We confirm results of previous tests that indicated systematic observations might improve efficiency during strategic planning, and improve science output during data analysis. This strategy does not markedly improve the rate at which a science team can ingest data to feed back into tactical decision-making. Other methods should be tested to separate the strategic and tactical processes, and to build in time for data analysis.
机译:我们使用MER衍生的半自主漫游者科学操作策略来确定适合于偏远半自主月球漫游者地质的最佳实践。两个野外研究小组研究了两个冰川冰rain,作为潜在的含冰月球重石的类似物。在每个站点,流动站队都命令一个流动站根据共同的MER序列执行观察;所得数据用于识别和表征感兴趣的目标。虎队跟随漫游者队使用传统的地面野战方法,并比较了两个队的结果。通过使用MER调查模式改编的操作策略,可以充分满足使用厘米级或更粗分辨率可以解决的狭窄目标。当侦察是主要目标时,经过测试的策略是必要的,但还不够。此外,对于这样狭义的,假设驱动的科学目标,可能会有一组最佳观察值,以至于收集更多数据将导致收益递减。我们确认先前测试的结果,这些结果表明系统的观察可能会改善战略规划期间的效率,并改善数据分析期间的科学输出。这种策略并不能显着提高科学团队摄取数据以反馈到战术决策中的速度。应该测试其他方法以分离战略和战术过程,并及时建立数据分析工具。

著录项

  • 来源
    《Acta astronautica》 |2014年第junaajula期|24-36|共13页
  • 作者单位

    Planetary Science Institute, 1700 E. Ft. Lowell, Suite 106, Tucson, AZ 85719, USA;

    NASA Marshall Space Flight Center, VP62, 320 Sparkman Dr., Huntsville, AL 35805, USA;

    Laboratory for Atmospheric and Space Physics and Geological Sciences, University of Colorado, 392 UCB, Boulder, CO 80309, USA;

    Department of Earth Sciences, Brock University, St. Catharines, Ont., Canada L2S 3A1;

    NASA Marshall Space Flight Center, VP62, 320 Sparkman Dr., Huntsville, AL 35805, USA,Colorado College Geology Department, 14 East Cache La Poudre St., Colorado Springs, CO 80903, USA;

    Planetary Science Institute, 1700 E. Ft. Lowell, Suite 106, Tucson, AZ 85719, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MER; Science operations; Rover; Analog; Field test;

    机译:MER;科学运作;漫游者模拟;现场试验;

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