DocumentCode :
29492
Title :
Urban-Area Extraction From Polarimetric SAR Images Using Polarization Orientation Angle
Author :
Kajimoto, Muneyoshi ; Susaki, Junichi
Author_Institution :
Grad. Sch. of Eng., Dept. of Civil & Earth Resources Eng., Kyoto Univ., Kyoto, Japan
Volume :
10
Issue :
2
fYear :
2013
fDate :
Mar-13
Firstpage :
337
Lastpage :
341
Abstract :
In this letter, an algorithm is proposed that robustly extracts urban areas from polarimetric synthetic aperture radar images. Polarization orientation angle (POA), volume scattering power (Pv) derived by four-component decomposition, and total power (TP) are utilized in the proposed algorithm. The dependence of the four decomposition components on POA can be lessened by rotating the elements of the coherency matrix by the POA. However, a level of POA dependence remains even after the correction. The proposed algorithm utilizes POA-corrected components, but pixels are grouped into several categories according to POA. First, urban and farmland training data are selected for each category in a study area. Then, urban and mountain areas are separated from farmland, bare ground, and sea by utilizing the Pv-TP scattergram. Finally, a measure of the POA randomness between neighboring pixels is used to discriminate between urban areas with nearly homogeneous POA and mountain areas with randomly distributed POAs. When performing classification on more than one study area, thresholds manually selected for one of the study areas are used to automatically estimate thresholds for the other areas. An accuracy assessment demonstrates that POA-based categorization and utilization of POA randomness contribute to improving classification accuracy.
Keywords :
geophysical image processing; geophysical techniques; image classification; radar imaging; synthetic aperture radar; POA randomness utilization; POA-based categorization; Pv-TP scattergram; classification accuracy; coherency matrix elements; farmland training data; four-component decomposition; polarimetric SAR images; polarization orientation angle; synthetic aperture radar; urban training data; urban-area extraction; volume scattering power; Accuracy; Buildings; Matrix decomposition; Scattering; Synthetic aperture radar; Training data; Urban areas; Four-component decomposition; polarimetric synthetic aperture radar (SAR); polarization orientation angle (POA); urban-area extraction;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
Publisher :
ieee
ISSN :
1545-598X
Type :
jour
DOI :
10.1109/LGRS.2012.2207085
Filename :
6257418
Link To Document :
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