Advanced Search
GUO Li, ZHANG Yu, LI Jinling, WANG Guangli, ZHENG Weimin. The High Precise Positioning Reduction Based on VLBI[J]. Journal of Deep Space Exploration, 2020, 7(6): 605-611. DOI: 10.15982/j.issn.2096-9287.2020.20200021
Citation: GUO Li, ZHANG Yu, LI Jinling, WANG Guangli, ZHENG Weimin. The High Precise Positioning Reduction Based on VLBI[J]. Journal of Deep Space Exploration, 2020, 7(6): 605-611. DOI: 10.15982/j.issn.2096-9287.2020.20200021

The High Precise Positioning Reduction Based on VLBI

  • Based on the delay and delay rate data from Very Long Baseline Interferometry(VLBI) and range and Doppler data from United S or X band system, the precise point positioning in real-time mode is got and the lunar lander or rover in quasi- real time mode with joint statistical method is obtained. With the precise point positioning method, free of various mechanical constraint, the three-dimensioned position information in real-time can be obtained. In special orbit maneuvering period such as braking at perilune and CE-4 relay satellite entering the Halo orbit at the Lagrangian translation point L2 of Earth-lunar system, the six-orbit elements at real time can be obtained as well, offering a rapid reference for the project. Using the joint statistical method and lunar height constraint, the position of CE-3 lander arrives at 100- meter external coincidence accuracy. With VLBI Same Beam Interferometry(SBI) phase-delay measurements, the external coincidence accuracy of the CE-3 rover reached at 1- meter level. It will promote more positioning analysis in the future deep space exploration projects.
  • loading

Catalog

    Turn off MathJax
    Article Contents

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return