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A simulation of the Four-way lunar Lander-Orbiter tracking mode for the Chang'E-5 mission

机译:Chang娥五号任务四路月球着陆器跟踪模式的仿真

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摘要

The Chang'E-5 mission is the third phase of the Chinese Lunar Exploration Program and will collect and return lunar samples. After sampling, the Orbiter and the ascent vehicle will rendezvous and dock, and both spacecraft will require high precision orbit navigation. In this paper, we present a novel tracking mode-Four-way lunar Lander-Orbiter tracking that possibly can be employed during the Chang'E-5 mission. The mathematical formulas for the Four-way lunar Lander-Orbiter tracking mode are given and implemented in our newly-designed lunar spacecraft orbit determination and gravity field recovery software, the LUnar Gravity REcovery and Analysis Software/System (LUGREAS). The simulated observables permit analysis of the potential contribution Four-way lunar Lander-Orbiter tracking could make to precision orbit determination for the Orbiter. Our results show that the Four-way lunar Lander-Orbiter Range Rate has better geometric constraint on the orbit, and is more sensitive than the traditional two-way range rate that only tracks data between the Earth station and lunar Orbiter. After combining the Four-way lunar Lander-Orbiter Range Rate data with the traditional two-way range rate data and considering the Lander position error and lunar gravity field error, the accuracy of precision orbit determination for the Orbiter in the simulation was improved significantly, with the biggest improvement being one order of magnitude, and the Lander position could be constrained to sub-meter level. This new tracking mode could provide a reference for the Chang'E-5 mission and have enormous potential for the positioning of future lunar farside Lander due to its relay characteristic.
机译:'娥五号飞行任务是中国探月计划的第三阶段,将收集和返回月球样本。采样后,轨道飞行器和上升飞行器会合并停靠,这两个航天器都需要高精度的轨道导航。在本文中,我们提出了一种新颖的跟踪模式-四向月球着陆器-轨道器跟踪,它可能在Chang娥五号任务中使用。在我们新设计的月球航天器轨道确定和重力场恢复软件(月球重力恢复和分析软件/系统(LUGREAS))中,给出并实现了四向月球着陆器跟踪模式的数学公式。模拟的可观察物允许分析四次月球着陆器-轨道器跟踪可能对确定轨道器的精确轨道做出的贡献。我们的结果表明,四向月球着陆器轨道距离比率对轨道具有更好的几何约束,并且比仅跟踪地球站和月球轨道器之间的数据的传统两向月球距离比率更敏感。将四向月球着陆器轨道距离测距数据与传统的两向月球距离率数据相结合,并考虑了登陆器位置误差和月球重力场误差后,仿真中轨道器的精确定轨精度大大提高,最大的改进是一个数量级,并且Lander的位置可能会限制在亚米级别。这种新的跟踪模式可以为the娥五号的飞行任务提供参考,并且由于其中继特性,在定位未来月球远端登陆器方面具有巨大潜力。

著录项

  • 来源
    《Advances in space research》 |2016年第11期|2376-2384|共9页
  • 作者单位

    State Key Laboratory of Information Engineering in Surveying, Mapping and Remote Sensing, Wuhan University, 129 Luoyu Road, Wuhan 430070, China,Chinese Antarctic Center of Surveying and Mapping, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    State Key Laboratory of Information Engineering in Surveying, Mapping and Remote Sensing, Wuhan University, 129 Luoyu Road, Wuhan 430070, China;

    State Key Laboratory of Information Engineering in Surveying, Mapping and Remote Sensing, Wuhan University, 129 Luoyu Road, Wuhan 430070, China;

    Chinese Antarctic Center of Surveying and Mapping, Wuhan University, 129 Luoyu Road, Wuhan 430079, China;

    Observatoire geodesique de Tahiti, BP 6570, 98702 Faa'a, Tahiti, French Polynesia;

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

    Chinese Lunar Exploration Program; Chang'E-5 mission; Four way lunar Lander-Orbiter tracking; Precision orbit determination;

    机译:中国探月计划;E娥五号任务;四路月球着陆器轨道跟踪;精密轨道确定;
  • 入库时间 2022-08-17 13:19:52

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