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Mission architecture decision support system for robotic lunar exploration

机译:机器人探月任务架构决策支持系统

摘要

It is common practice in the landing site decision process for planetary or lunar exploration to limit the choice of sites to locations that strictly meet the technical and safety requirements of the lander. The science objective is ultimately implemented within the operational requirements of the mission strategy. In this paper, we present a study that derives the technical requirements of the landing strategy by considering proposed landing sites. The study reviewed the objectives of the future robotic exploration of the Moon and proposed targets from the Apollo era to our time. Three types of strategies are defined, namely, rover missions, immobile landing stations, and impacting probes. The capabilities and restrictions of each system are taken into account and compared to the science objectives of the proposed landing sites. A Geographic Information System (GIS) with lunar datasets was developed and the methodology was implemented. The study concludes with a description of the resulting mission scenarios that were assigned to the targets. The technical requirements for each landing system to fulfil these scientific objectives are derived and the feasibility, based on the technological readiness, is discussed.
机译:在行星或月球探索的着陆点决策过程中,通常的做法是将地点的选择限制在严格满足着陆器技术和安全要求的位置。科学目标最终在任务策略的操作要求内实现。在本文中,我们提出了一项研究,通过考虑拟议的着陆点来得出着陆策略的技术要求。该研究回顾了未来对月球进行机器人探索的目标,并提出了从阿波罗时代到我们时代的目标。定义了三种类型的策略,即漫游车任务,不动的着陆站和撞击探测器。考虑到每个系统的功能和限制,并将其与拟议着陆点的科学目标进行比较。开发了具有月球数据集的地理信息系统(GIS),并实施了该方法。该研究以对分配给目标的最终任务场景的描述作为结束。得出了实现这些科学目标的每个着陆系统的技术要求,并基于技术准备情况讨论了可行性。

著录项

  • 作者

    Weiss P; Yung KL;

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

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