• DocumentCode
    513039
  • Title

    A revised radiometric normalisation standard for SAR

  • Author

    Small, David ; Miranda, Nuno ; Meier, Erich

  • Author_Institution
    Remote Sensing Labs., Univ. of Zurich, Zurich, Switzerland
  • Volume
    4
  • fYear
    2009
  • fDate
    12-17 July 2009
  • Abstract
    Improved geometric accuracy in SAR sensors implies that more complex models of the Earth may be used not only to geometrically rectify imagery, but also to more robustly calibrate their radiometry. Current beta, sigma, and gamma nought SAR radiometry conventions all assume a simple ¿flat as Kansas¿ Earth ellipsoid model. We complement these simple models with improved radiometric calibration that accounts for local terrain variations. In the era of ERS-1 and RADARSAT-1, image geolocation accuracy was in the order of multiple samples, and tiepoint-free establishment of the relationship between radar and map geometries was not possible. Newer sensors such as ASAR, PALSAR, and TerraSAR-X all support accurate geolocation based on product annotations alone. We show that high geolocation accuracy, combined with availability of high-resolution accurate elevation models, enables a more robust radiometric calibration standard for modern SAR sensors that is based on gamma nought normalised using an Earth terrain-model.
  • Keywords
    radar cross-sections; radar imaging; radiometry; synthetic aperture radar; terrain mapping; ASAR; ERS-1; Earth ellipsoid model; Earth terrain-model; PALSAR; RADARSAT-1; SAR sensors; TerraSAR-X; beta nought SAR radiometry; elevation models; gamma nought SAR radiometry; image geolocation accuracy; radar cross section; radar imaging; radar measurements; radar scattering; radar terrain factors; radiometric calibration; radiometric normalisation standard; sigma nought SAR radiometry; terrain variations; Availability; Calibration; Earth; Ellipsoids; Geometry; Image sensors; Radar imaging; Radiometry; Robustness; Solid modeling; Radar cross section; Radar imaging; Radar measurements; Radar scattering; Radar terrain factors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Geoscience and Remote Sensing Symposium,2009 IEEE International,IGARSS 2009
  • Conference_Location
    Cape Town
  • Print_ISBN
    978-1-4244-3394-0
  • Electronic_ISBN
    978-1-4244-3395-7
  • Type

    conf

  • DOI
    10.1109/IGARSS.2009.5417439
  • Filename
    5417439