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Autonomous optical navigation for lunar missions

机译:用于月球任务的自主光学导航

摘要

Four measurement options for Orion autonomous optical lunar navigation are analyzed using linear covariance analysis methods. The measurements include a feature tracking camera measurement, star landmark elevation measurement, star horizon elevation measurement, and star occultation measurement. Based on trade studies performed, the star landmark measurement is superior to the star horizon measurement closer to the lunar surface, while the horizon sensor has better performance above an altitude of several thousand kilometers. The feature tracking camera performs comparably to the star landmark measurement. The star occultation camera is the worst performer throughout all trajectories due to the inability to include measurements continuously. However, its ability to take occultation measurements on the sunlit or eclipsed side of the Moon makes it a valuable aid to the crater-based measurements, which can only be taken over a sunlit surface.
机译:使用线性协方差分析方法分析了Orion自主光学月球导航的四个测量选项。这些测量包括功能跟踪相机测量,恒星地标高程测量,恒星水平高程测量和恒星掩星测量。根据进行的贸易研究,恒星地标测量优于靠近月球表面的恒星水平测量,而水平传感器在数千公里的海拔高度上具有更好的性能。特征跟踪相机的性能与星标测量相当。由于无法连续进行测量,星型掩星相机在所有轨迹中表现最差。但是,它具有在月光照射下或月蚀面进行掩星测量的能力,使其成为仅在阳光照射下的基于火山口的测量的宝贵帮助。

著录项

  • 作者

    Crouse Brian;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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