• DocumentCode
    1559870
  • Title

    On the estimation of radar polarization orientation shifts induced by terrain slopes

  • Author

    Lee, Jong-Sen ; Schuler, Dale L. ; Ainsworth, Thomas L. ; Krogager, Ernst ; Kasilingam, Dayalan ; Boerner, Wolfgang-Martin

  • Author_Institution
    Remote Sensing Div., Naval Res. Lab., Washington, DC, USA
  • Volume
    40
  • Issue
    1
  • fYear
    2002
  • fDate
    1/1/2002 12:00:00 AM
  • Firstpage
    30
  • Lastpage
    41
  • Abstract
    In recent studies, D. L. Schuler et al. (2000) applied polarimetric imaging radar-derived orientation angles to measure topography, and J. S. Lee et al. (2000) used orientation angles for polarimetric SAR data compensation, to ensure accurate estimation of geophysical parameters in rugged terrain areas. To support these applications, it is important to accurately estimate shifts in orientation angles induced by the azimuth slope variations. However, in many cases, inconsistency in the estimation of orientation angle shifts was encountered in several areas, introducing noisy and erroneous results. The present authors develop a unified analysis of estimation algorithms based on the circular polarization covariance matrix. The concept of reflection symmetry is used to explain the soundness of the circular polarization method and to show problems associated with other algorithms. L-band polarimetric synthetic aperture radar (SAR) images of Camp Roberts, CA, are used to substantiate this theory
  • Keywords
    geophysical techniques; radar imaging; radar polarimetry; remote sensing by radar; synthetic aperture radar; terrain mapping; topography (Earth); L-band; SAR; circular polarization covariance matrix; circular polarization method; estimation algorithm; geophysical measurement technique; land surface topography; orientation angle; polarimetric imaging; radar polarimetry; radar polarization orientation shift; radar remote sensing; reflection symmetry; rugged terrain; synthetic aperture radar; terrain mapping; terrain slope; Acoustic noise; Algorithm design and analysis; Azimuth; Geophysical measurements; Goniometers; Parameter estimation; Polarization; Radar imaging; Radar polarimetry; Surfaces;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/36.981347
  • Filename
    981347