• DocumentCode
    1465954
  • Title

    Topographic Correction for ALOS PALSAR Interferometry

  • Author

    Samsonov, Sergey

  • Author_Institution
    GNS Sci., Lower Hutt, New Zealand
  • Volume
    48
  • Issue
    7
  • fYear
    2010
  • fDate
    7/1/2010 12:00:00 AM
  • Firstpage
    3020
  • Lastpage
    3027
  • Abstract
    L-band synthetic aperture radar (SAR) interferometry is very successful for mapping ground deformation in densely vegetated regions. However, due to its larger wavelength, the capacity to detect slow deformation over a short period of time is limited. Stacking and small baseline subset (SBAS) techniques are routinely used to produce time series of deformation and average deformation rates by reducing the contribution of topographic and atmospheric noise. For large sets of images that are presently available from C-band European Remote Sensing Satellites (ERS-1/2) and Environmental Satellite (ENVISAT), the standard stacking and SBAS algorithms are accurate. However, the same algorithms are often inaccurate when used for processing of interferograms from L-band Advanced Land Observing Satellite Phased Array type L-band SAR (ALOS PALSAR). This happens because only a limited number of interferograms is acquired and also because of large spatial baselines often correlated with the time of acquisition. In this paper two techniques are suggested that can be used for removing the residual topographic component from stacking and SBAS results, thereby increasing their accuracy.
  • Keywords
    geomorphology; geophysical image processing; radar interferometry; remote sensing by radar; synthetic aperture radar; terrain mapping; time series; ALOS PALSAR interferometry; C-band European Remote Sensing Satellites; ENVISAT; ERS-1; ERS-2; Environmental Satellite; L-band Advanced Land Observing Satellite Phased Array type L-band SAR; L-band synthetic aperture radar interferometry; SBAS algorithm; atmospheric noise; average deformation rate; densely vegetated regions; ground deformation; interferograms; residual topographic component; small baseline subset techniques; small baseline subset topographic correction; spatial baselines; standard stacking algorithm; time series; topographic noise; Advanced Land Observing Satellite (ALOS) Phased-Array-type L-band synthetic aperture radar (SAR) (PALSAR); SAR interferometry (InSAR); interferometry; small baseline subset (SBAS) topographic correction; stacking;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/TGRS.2010.2043739
  • Filename
    5444896