4.7 Article

Statistical Modeling of PMA Detector for Ship Detection in High-Resolution Dual-Polarization SAR Images

Journal

IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING
Volume 54, Issue 7, Pages 4302-4313

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TGRS.2016.2539200

Keywords

Amplitude; polarization; ship detection; statistical modeling; synthetic aperture radar (SAR)

Funding

  1. National Twelfth Five-Year Plan for Science and Technology [2014BAK12B03]
  2. Outstanding Yong People Scientific Research Plan of National University of Defense Technology [JQ14-04-01]
  3. Scientific Research Plan of National University of Defense Technology [JC13-04-02]

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The product of multilook amplitudes (PMA) detector has been used to detect ships in high-resolution dual-polarization synthetic-aperture-radar images. However, the adaptive constant false-alarm rate (CFAR) technique of the PMA detector is desirable for practical applications, wherein a crucial problem is to find an appropriate model to describe the PMA statistics for varied sea surfaces. First, we consider a new probability density function to characterize the PMA statistics of homogeneous sea surfaces. Second, by using the new density and multiplicative model, the PMA detector's statistical model for nonhomogeneous sea surfaces is specified and demonstrated to be the G(0) distribution. Then, a theoretical analysis of the relationship between the performance of the standard CFAR detection and the parameters in the G(0) distribution is conducted. Experiments performed on the measured RADARSAT-2 and NASA/JPL AIRSAR images verify the effectiveness and appropriateness of the G(0) model for describing the statistical behavior of the PMA of sea clutter, as well as the usefulness of the model for practical ship-detection applications.

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