Pan-location mapping and localization for the in-situ science exploration of Zhurong Mars rover

被引:0
|
作者
Xingguo Zeng
Jianjun Liu
Xin Ren
Wei Yan
Qiang Fu
Xingye Gao
Wangli Chen
Wei Zuo
Chunlai Li
机构
[1] Chinese Academy of Sciences,Key Laboratory of Lunar and Deep Space Exploration, National Astronomical Observatories
[2] University of Chinese Academy of Sciences,School of Astronomy and Space Science
来源
关键词
pan-location mapping; planetary exploration; geo-visualization; Tianwen-1 mission; Zhurong rover;
D O I
暂无
中图分类号
学科分类号
摘要
On May 15, 2021, Tianwen-1 successfully landed in the Utopia Planitia of Mars, and its rover Zhurong began to carry out an in-situ science exploration of the Mars surface. To determine the location, driving direction, and exploration targets of the rover, it is necessary to provide decision support for the in-situ science exploration of the rover and ensure the achievement of the scientific objectives, which pose significant challenges to the ground science team. Based on the classical research on Lunar and planetary localization, navigation and exploration target selection, and the recent study of pan-location cartographic theory, a pan-location mapping method for an in-situ rover exploration is proposed. In addition, a pan-location reference system, mapping data model, and mapping method are designed to realize the localization and visualization of the landing platform, rover, and exploration targets. The mapping method has been successfully applied to the localization, navigation, and science exploration of the target selection involved in the in-situ exploration of the Zhurong rover. The results of this study not only provide vital support to the implementation of the Tianwen-1 mission; they can also be used as instructions for other future in-situ Lunar and planetary exploration missions.
引用
收藏
相关论文
共 50 条
  • [41] Expected Science Return of Spatially-Extended In-Situ Exploration at Small Solar System Bodies
    Castillo-Rogez, Julie C.
    Pavone, Marco
    Nesnas, Issa A. D.
    Hoffman, Jeffrey A.
    2012 IEEE AEROSPACE CONFERENCE, 2012,
  • [42] SOMATIC-CELL MAPPING AND IN-SITU LOCALIZATION OF THE BOVINE URIDINE MONOPHOSPHATE SYNTHASE GENE (UMPS)
    RYAN, AM
    GALLAGHER, DS
    SCHOBER, S
    SCHWENGER, B
    WOMACK, JE
    MAMMALIAN GENOME, 1994, 5 (01) : 46 - 47
  • [43] Modelling martian dust devils using in-situ wind, pressure, and UV radiation measurements by Mars Science Laboratory
    Kahanpaa, Henrik
    Viudez-Moreiras, Daniel
    ICARUS, 2021, 359
  • [44] In-situ mapping of iron and titanium with the visible and near-infrared image spectrometer (VNIS) along the Yutu-2 rover traverse on the farside of the moon
    Liu, Sicong
    Du, Kecheng
    Tong, Xiaohua
    Xie, Huan
    Feng, Yongjiu
    Jin, Yanmin
    Wang, Chao
    Zhao, Hui
    Zhang, Jie
    ICARUS, 2024, 412
  • [45] In-situ damage localization for a wind turbine blade through outlier analysis of stochastic dynamic damage location vector-induced stress resultants
    Ulriksen, Martin Dalgaard
    Tcherniak, Dmitri
    Hansen, Lasse M.
    Johansen, Rasmus Johan
    Damkilde, Lars
    Froyd, Lars
    STRUCTURAL HEALTH MONITORING-AN INTERNATIONAL JOURNAL, 2017, 16 (06): : 745 - 761
  • [46] Determination of in-situ stress direction from cleat orientation mapping for coal bed methane exploration in south-eastern part of Jharia coalfield, India
    Department of Applied Geophysics, Indian School of Mines, Dhanbad, India
    Int. J. Coal Geol., 2 (87-96):
  • [47] Determination of in-situ stress direction from cleat orientation mapping for coal bed methane exploration in south-eastern part of Jharia coalfield, India
    Paul, Suman
    Chatterjee, Rima
    INTERNATIONAL JOURNAL OF COAL GEOLOGY, 2011, 87 (02) : 87 - 96
  • [48] SOMATIC-CELL MAPPING OF BETA-DEFENSIN GENES TO CATTLE SYNTENIC GROUP U25 AND FLUORESCENCE IN-SITU LOCALIZATION TO CHROMOSOME-27
    GALLAGHER, DS
    RYAN, AM
    DIAMOND, G
    BEVINS, CL
    WOMACK, JE
    MAMMALIAN GENOME, 1995, 6 (08) : 554 - 556
  • [49] SOMATIC-CELL MAPPING OF CONGLUTININ (CGN1) TO CATTLE SYNTENIC GROUP U29 AND FLUORESCENCE IN-SITU LOCALIZATION TO CHROMOSOME-28
    GALLAGHER, DS
    RYAN, AM
    LIOU, LS
    SASTRY, KN
    WOMACK, JE
    MAMMALIAN GENOME, 1993, 4 (12) : 716 - 719
  • [50] EVIDENCE FOR THE ABSENCE OF INTRON-H OF THE HISTIDINE-RICH GLYCOPROTEIN (HRG) GENE - GENETIC-MAPPING AND IN-SITU LOCALIZATION OF HRG TO CHROMOSOME 3Q28-Q29
    HENNIS, BC
    FRANTS, RR
    BAKKER, E
    VOSSEN, RHAM
    VANDERPOORT, EW
    BLONDEN, LA
    COX, S
    KHAN, PM
    SPURR, NK
    KLUFT, C
    GENOMICS, 1994, 19 (01) : 195 - 197