DocumentCode
1465327
Title
Detecting Depolarized Targets Using a New Geometrical Perturbation Filter
Author
Marino, Armando ; Cloude, Shane R. ; Woodhouse, Iain H.
Author_Institution
Inst. of Environ. Eng. (IfU-Baug), ETH Zurich, Zürich, Switzerland
Volume
50
Issue
10
fYear
2012
Firstpage
3787
Lastpage
3799
Abstract
Target detectors using polarimetry are often focused on single targets, since these can be characterized in a simpler and deterministic way. The algorithm proposed in this paper is aimed at the more difficult problem of partial-target detection (i.e., targets with arbitrary degree of polarization). The authors have already proposed a single-target detector employing filters based on a geometrical perturbation. In order to enhance the algorithm to the detection of partial targets, a new vector formalism is introduced. The latter is similar to the one exploited for single targets but suitable for complete characterization of partial targets. A new feature vector is generated starting from the covariance matrix and exploited for the perturbation method. Validation against L-band fully polarimetric airborne E-SAR and ALOS PALSAR data and X-band dual-polarimetric TerraSAR-X data is provided with significant agreement with the expected results. Additionally, a comparison with the supervised Wishart classifier is presented revealing improvements.
Keywords
covariance matrices; geophysical techniques; object detection; perturbation techniques; radar polarimetry; synthetic aperture radar; ALOS PALSAR data; L-band fully polarimetric airborne E-SAR data; X-band dual-polarimetric TerraSAR-X data; covariance matrix; depolarized targets; feature vector; geometrical perturbation filter; partial-target detection; perturbation method; polarimetry; single-target detector; supervised Wishart classifier; synthetic aperture radar; vector formalism; Clutter; Coherence; Covariance matrix; Detectors; Synthetic aperture radar; Vectors; Classification; polarimetry; synthetic aperture radar (SAR); target detection;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2012.2185703
Filename
6165655
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