Rover localization and landing-site mapping technology for the 2003 Mars Exploration rover mission

被引:45
|
作者
Li, RX
Di, KC
Matthies, LH
Arvidson, RE
Folkner, WM
Archinal, BA
机构
[1] Ohio State Univ, Dept Civil & Environm Engn & Geodet Sci, Columbus, OH 43210 USA
[2] CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
[3] Washington Univ, Dept Earth & Planetary Sci, McDonnell Ctr Space Sci, St Louis, MO 63130 USA
[4] US Geol Survey, Flagstaff, AZ 86001 USA
来源
关键词
D O I
10.14358/PERS.70.1.77
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
The technology and experiments planned for rover localization and landing site mopping in the 2003 Mars Exploration Rover (MER) mission are described. We introduce the Mars global and landing site local reference systems. For global rover localization in the Mars body-fixed reference system, a triangulation can be performed using observations of common landmarks on satellite images and the very first set of surface images. Alternatively, ultra-high frequency (UHF) two-way Doppler tracking technology can determine the location. For localization of the rover in the landing site area, onboard rover localization techniques will be performed in real time. A visual odometry experiment will improve localization by overcoming problems associated with wheel odometry such as slippage and low accuracy. Finally, a bundle-adjustment-based rover localization method will build an image network acquired by Pancam, Navcam, and Hazcam cameras. The developed incremental and integrated bundle adjustment models will supply improved rover locations and image orientation parameters, which are critical for the generation of high quality landing site topographic mapping products, Based on field tests performed on Earth and Mars (MPF mission data), a relative localization accuracy of one percent of the traversing distance from the landing center is expected to be achieved during this mission. In addition, the bundle adjustment results will also enable us to produce high precision landing site topographic mapping products, including seamless panoramic image Mosaics, DTMS, and orthophotos.
引用
收藏
页码:77 / 90
页数:14
相关论文
共 50 条
  • [1] Initial results of rover localization and topographic mapping for the 2003 mars exploration rover mission
    Li, RX
    Squyres, SW
    Arvidson, RE
    Archinal, BA
    Bell, J
    Cheng, Y
    Crumpler, L
    Marais, DJD
    Di, K
    Ely, TA
    Golombek, M
    Graat, E
    Grant, J
    Guinn, J
    Johnson, A
    Greeley, R
    Kirk, RL
    Maimone, M
    Matthies, LH
    Malin, M
    Parker, T
    Sims, M
    Soderblom, LA
    Thompson, S
    Wang, J
    Whelley, P
    Xu, FL
    PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 2005, 71 (10): : 1129 - 1142
  • [2] Geology of the Melas Chasma landing site for the Mars Exploration Rover mission
    Weitz, CM
    Parker, TJ
    Bulmer, MH
    Anderson, FS
    Grant, JA
    JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2003, 108 (E12)
  • [3] Photogrammetric processing of rover imagery of the 2003 Mars Exploration Rover mission
    Di, Kaichang
    Xu, Fengliang
    Wang, Jue
    Agarwal, Sanchit
    Brodyagina, Evgenia
    Li, Rongxing
    Matthies, Larry
    ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2008, 63 (02) : 181 - 201
  • [4] Assessment of Mars Exploration Rover landing site predictions
    Golombek, MP
    Arvidson, RE
    Bell, JF
    Christensen, PR
    Crisp, JA
    Crumpler, LS
    Ehlmann, BL
    Fergason, RL
    Grant, JA
    Greeley, R
    Haldemann, AFC
    Kass, DM
    Parker, TJ
    Schofield, JT
    Squyres, SW
    Zurek, RW
    NATURE, 2005, 436 (7047) : 44 - 48
  • [5] Assessment of Mars Exploration Rover landing site predictions
    M. P. Golombek
    R. E. Arvidson
    J. F. Bell
    P. R. Christensen
    J. A. Crisp
    L. S. Crumpler
    B. L. Ehlmann
    R. L. Fergason
    J. A. Grant
    R. Greeley
    A. F. C. Haldemann
    D. M. Kass
    T. J. Parker
    J. T. Schofield
    S. W. Squyres
    R. W. Zurek
    Nature, 2005, 436 : 44 - 48
  • [6] Entry, descent, and landing scenario for the Mars exploration rover mission
    Desai, Prasun N.
    Lee, Wayne J.
    Steltzner, Adam
    JOURNAL OF THE ASTRONAUTICAL SCIENCES, 2007, 55 (04): : 421 - 430
  • [7] Entry, descent, and landing scenario for the mars exploration rover mission
    Prasun N. Desai
    Wayne J. Lee
    Adam Steltzner
    The Journal of the Astronautical Sciences, 2007, 55 : 421 - 430
  • [8] Entry descent, and landing scenario for the Mars Exploration Rover mission
    Desai, PN
    Lee, WJ
    PLANETARY PROBE ATMOSPHERIC ENTRY AND DESCENT TRAJECTORY ANALYSIS AND SCIENCE, 2004, 544 : 31 - 36
  • [9] Entry, descent, and landing scenario for the Mars Exploration Rover mission
    Desai, Prasun N.
    Lee, Wayne J.
    Steltzner, Adam
    Journal of the Astronautical Sciences, 1600, 55 (04): : 421 - 430
  • [10] Mars Exploration Rover mission
    Crisp, JA
    Adler, M
    Matijevic, JR
    Squyres, SW
    Arvidson, RE
    Kass, DM
    JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 2003, 108 (E12)