• DocumentCode
    2678575
  • Title

    Quality of orthorectified TerraSAR-X products

  • Author

    Huber, Martin ; Wessel, Birgit ; Habermeyer, Martin ; Roth, Achim

  • Author_Institution
    German Aerosp. Center, Oberpfaffenhofen
  • fYear
    2007
  • fDate
    23-28 July 2007
  • Firstpage
    3937
  • Lastpage
    3937
  • Abstract
    Summary form only given. The German Aerospace Center (DLR) has developed the TerraSAR-X Ground Segment. One part is the geocoding system that provides orthorectification capability for multi- resolution, multi-polarisation and multi-frequency data. Besides an ellipsoid corrected product a new product called Enhanced Ellipsoid Corrected (EEC) will be offered that considers digital elevation models (DEM) of a moderately coarser resolution then the 1 up to 3 m resolution of the TerraSAR-X modes. SRTM/X-band DEMs with approximately 25 m spacing will be the backbone for this operational and fully automated service. As optional product an geocoded incidence angle mask (GIM) is available providing information about the incidence angle of the radar beam, as well as about layover and shadow areas. High precision terrain correction using high resolution DEMs, tie-pointing and image adjustment will be implemented in an experimental processor. This paper gives detailed information on the image quality, which is examined in detail based on the first available geocoded TerraSAR-X products. Therefore radiometric and geometric aspects will be investigated. It is to be shown that the orthorectification step does not tamper the original radiometric properties. The geometric accuracy of the orthorectification mainly depends on the quality of the used DEM. Besides the SRTM/X-band DEM additional elevation data like SRTM/C-band, ERS-derived and GLOBE data are used for EEC generation. The achieved pixel location accuracies will be presented. The quality characteristics of the Geocoded Incidence Angle Mask - depending also on the used DEM - are described. Moreover the high precision orthorectified image (called geocoded terrain corrected - GTC) will be examined with regard to pixel location accuracy. A high resolution laserscanning DEM, tie-points and image adjustment will be used for this analysis. Furthermore information regarding processing performance will be given.
  • Keywords
    geophysical signal processing; image resolution; radar imaging; radar polarimetry; remote sensing by radar; synthetic aperture radar; terrain mapping; German Aerospace Center; SRTM-X-band data; TerraSAR-X Ground Segment; digital elevation model; elevation data; enhanced ellipsoid corrected product; geocoded incidence angle mask; geocoded terrain corrected image; geocoding system; geometric aspects; image adjustment; image quality; multifrequency data; multipolarisation data; multiresolution data; orthorectified TerraSAR-X products; pixel location accuracy; radar beam incidence angle; radiometric aspects; terrain correction; tie-pointing; Digital elevation models; Ellipsoids; Image analysis; Image quality; Image resolution; Pixel; Radar imaging; Radiometry; Remote sensing; Spine; Geocoding; Orthorectification; TerraSAR-X;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Geoscience and Remote Sensing Symposium, 2007. IGARSS 2007. IEEE International
  • Conference_Location
    Barcelona
  • Print_ISBN
    978-1-4244-1211-2
  • Electronic_ISBN
    978-1-4244-1212-9
  • Type

    conf

  • DOI
    10.1109/IGARSS.2007.4423707
  • Filename
    4423707