Terrain Mapping Camera: A stereoscopic high-resolution instrument on Chandrayaan-1

被引:0
|
作者
Kumar, A. S. Kiran [1 ]
Chowdhury, A. Roy [1 ]
Banerjee, A. [1 ]
Dave, A. B. [1 ]
Sharma, B. N. [1 ]
Shah, K. J. [1 ]
Murali, K. R. [1 ]
Joshi, S. R. [1 ]
Sarkar, S. S. [1 ]
Patel, V. D. [1 ]
机构
[1] Ctr Space Applicat, Ahmadabad 380015, Gujarat, India
来源
CURRENT SCIENCE | 2009年 / 96卷 / 04期
关键词
Active pixel sensor; digital elevation map; Moon; stereoscopic view; LUNAR CRUST;
D O I
暂无
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Chandrayaan-1, India's first lunar mission, has the prime objective of simultaneous chemical, mineralogical and photo-selenological mapping of the lunar surface. In keeping with the mission objectives, Chandrayaan-1 carries the Terrain Mapping Camera (TMC) designed to map the entire lunar surface during the planned two-year mission. TMC data will enable preparation of a three-dimensional lunar atlas with 5 m sampled spatial and altitude data of 12 bit digitization. The TMC will image in the panchromatic spectral band of 0.5-0.75 mu m with a stereo view in the fore, nadir and aft directions of the spacecraft movement and have a base to height ratio of one.
引用
收藏
页码:492 / 495
页数:4
相关论文
共 50 条
  • [41] High-Resolution Mapping of Wet Terrain within Discontinuous Permafrost using LiDAR Intensity
    Stevens, Christopher W.
    Wolfe, Stephen A.
    PERMAFROST AND PERIGLACIAL PROCESSES, 2012, 23 (04) : 334 - 341
  • [42] Digital terrain mapping from multispectral and high-resolution satellite data for defense studies
    Pandey, Suraj
    Multisensor, Multisource Information Fusion: Architectures, Algorithms, and Applications 2007, 2007, 6571 : S5710 - S5710
  • [43] High resolution terrain mapping with an autonomous blimp
    Lacroix, S
    Jung, IK
    2002 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS, VOLS 1-3, PROCEEDINGS, 2002, : 781 - 786
  • [44] High-resolution extended NIR camera
    Cabelli, SA
    Pan, J
    Bernd, SG
    Tennant, WE
    Blackwell, JD
    Bhargava, S
    Pasko, JG
    Piquette, EC
    Edwall, DD
    INFRARED TECHNOLOLGY AND APPLICATIONS XXIX, 2003, 5074 : 343 - 352
  • [45] A HIGH-RESOLUTION MICRODIFFRACTION CAMERA FOR STEM
    RODENBURG, JM
    MCMULLAN, D
    INSTITUTE OF PHYSICS CONFERENCE SERIES, 1983, (68): : 511 - 514
  • [46] Development of a high-resolution alpha camera
    Yamamoto, S
    Iida, T
    Kanno, I
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 1997, 392 (1-3): : 291 - 294
  • [47] The Assembling of High-resolution Microsatellite Camera
    Chen, Yufang
    Wu, Zhencong
    Wang, Min
    SPACE OPTICS, TELESCOPES, AND INSTRUMENTATION (AOPC 2019), 2019, 11341
  • [48] Radiation Study of Swept-Charge Devices for the Chandrayaan-1 X-ray Spectrometer (C1XS) instrument
    Gow, J.
    Smith, D. R.
    Holland, A. D.
    Maddison, B.
    Howe, C.
    Grande, M.
    Sreekumar, P.
    Huovelin, J.
    HIGH ENERGY, OPTICAL, AND INFRARED DETECTORS FOR ASTRONOMY III, 2008, 7021
  • [49] HIGH-RESOLUTION MAPPING WITH THE FST
    BUNTON, JD
    JONES, IG
    BROWN, DR
    PROCEEDINGS ASTRONOMICAL SOCIETY OF AUSTRALIA, 1985, 6 (01): : 93 - 100
  • [50] High-Resolution Inundation Mapping for Heterogeneous Land Covers with Synthetic Aperture Radar and Terrain Data
    Aristizabal, Fernando
    Judge, Jasmeet
    Monsivais-Huertero, Alejandro
    REMOTE SENSING, 2020, 12 (06)