• DocumentCode
    111461
  • Title

    Speckle Tracking and Interferometric Processing of TerraSAR-X TOPS Data for Mapping Nonstationary Scenarios

  • Author

    Scheiber, Rolf ; Jager, Marc ; Prats-Iraola, Pau ; De Zan, Francesco ; Geudtner, Dirk

  • Author_Institution
    Microwaves & Radar Inst., German Aerosp. Center (DLR), Oberpfaffenhofen, Germany
  • Volume
    8
  • Issue
    4
  • fYear
    2015
  • fDate
    Apr-15
  • Firstpage
    1709
  • Lastpage
    1720
  • Abstract
    Terrain observation by progressive scan (TOPS) antenna beam steering is utilized for European Space Agency´s (ESA´s) Sentinel-1 synthetic aperture radar (SAR) sensor for the interferometric wide swath (IW) and extra wide swath (EW) modes. As a consequence of the azimuth steering, the resulting signal characteristics have to be accounted for in SAR interferometric (InSAR) processing. This paper assesses the performance of speckle tracking and spectral diversity (SD) [also referred to as split spectrum or multi-aperture interferometry (MAI)] when applied to TOPS data acquired over nonstationary scenarios, such as glaciers. The characteristics of the TOPS signal, especially the azimuth-variant Doppler centroid, are discussed with particular consideration of along-track surface motion between the interferometric acquisitions. The TOPS specific coregistration requirements are formulated, followed by an analysis of the theoretical estimation accuracy as a function of the estimation window size. A refined adaptive coregistration approach based on SD is suggested. Experimental TerraSAR-X TOPS data acquired over the Lambert glacier, Antarctica, are used to validate the proposed speckle tracking and SD methodologies.
  • Keywords
    beam steering; data acquisition; geophysical signal processing; glaciology; hydrological techniques; radar interferometry; synthetic aperture radar; Antarctica; European Space Agency Sentinel-1 synthetic aperture radar sensor; Experimental TerraSAR-X terrain observation by progressive scan data; Lambert Glacier; SAR interferometric processing; TOPS specific coregistration; along-track surface motion; azimuth-variant Doppler centroid; estimation accuracy; estimation window size; interferometric acquisitions; interferometric extra wide swath; multiaperture interferometry; nonstationary scenario mapping; nonstationary scenarios; refined adaptive coregistration approach; signal characteristics; speckle tracking; spectral diversity; split spectrum; terrain observation by progressive scan antenna beam steering; terrain observation by progressive scan signal; Accuracy; Azimuth; Coherence; Doppler effect; Estimation; Orbits; Synthetic aperture radar; Burst-mode acquisitions; Sentinel-1l; TerraSAR-X; coregistration; synthetic aperture radar (SAR); terrain observation by progressive scan (TOPS); wide-swath SAR modes;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1939-1404
  • Type

    jour

  • DOI
    10.1109/JSTARS.2014.2360237
  • Filename
    6926747