• DocumentCode
    1118832
  • Title

    3-D Radargrammetric Modeling of RADARSAT-2 Ultrafine Mode: Preliminary Results of the Geometric Calibration ^{\\ast }

  • Author

    Toutin, Thierry ; Chénier, René

  • Author_Institution
    Natural Resources Canada, Canada Centre for Remote Sensing, Ottawa, ON, Canada
  • Volume
    6
  • Issue
    3
  • fYear
    2009
  • fDate
    7/1/2009 12:00:00 AM
  • Firstpage
    611
  • Lastpage
    615
  • Abstract
    The geometry and the accuracy of the 3-D cartographic localization of RADARSAT-2 images are being evaluated as part of the Canadian Space Agency´s Science and Operational Applications Research program. In a first step, the Toutin´s 3-D physical model, previously developed for RADARSAT-1, was adapted to RADARSAT-2 sensor and applied to two ultrafine mode images (U2 and U25) acquired over an area in Beauport, Quebec. Both the 3-D modeling computed with only 12 ground control points and its geometric localization were evaluated with different check data: (1) independent check points; (2) the two quasi-epipolar images; (3) the two orthoimages; and (4) 1-m accurate orthophotos. All four results and validations are in agreement and confirm that the 3-D geometric localization and restitution accuracy are 1 m in planimetry and 2 m in elevation. The checked data error being included in these evaluations and the relative error computed from the quasi-epipolar comparison provided a high level of confidence that the precision of Toutin´s 3-D radargrammetric model is better than 0.25 m.
  • Keywords
    cartography; image processing; remote sensing by radar; 3D cartographic localization; 3D geometric localization; 3D radargrammetric modeling; Beauport; Canadian Space Agency´s Science; Operational Applications Research program; Quebec city; RADARSAT-2 images; RADARSAT-2 sensor; Toutin´s 3D radargrammetric model; checked data error; geometric calibration; ground control points; orthoimages; orthophotos; planimetry; quasi-epipolar images; ultrafine mode images; Error analysis; geometric modeling; radar; remote sensing; satellite;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1545-598X
  • Type

    jour

  • DOI
    10.1109/LGRS.2009.2024391
  • Filename
    5129958