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- Title
Surface Water Body Detection in Polarimetric SAR Data Using Contextual Complex Wishart Classification.
- Authors
Goumehei, E.; Tolpekin, V.; Stein, A.; Yan, W.
- Abstract
Detection of surface water from satellite images is important for water management purposes like for mapping flood extents, inundation dynamics, and water resources distributions. In this research, we introduce a supervised contextual classification model to detect surface water bodies from polarimetric Synthetic Aperture Radar (SAR) data. A complex Wishart Markov Random Field (WMRF) combines Markov Random Fields with the complex Wishart distribution. It is applied on Single Look Complex Sentinel 1 data. Using Markov Random Fields, we utilize the geometry of surface water to remove speckle from SAR images. Results were compared with the Wishart Maximum Likelihood Classification (WMLC), the Gaussian Maximum Likelihood Classification, and a median filter followed by thresholding. Experiments demonstrate that the statistical representation of data using the Wishart distribution improves the F‐score to 0.95 for WMRF, while it is 0.67, 0.88, and 0.91 for Gaussian Maximum Likelihood Classification, WMLC, and thresholding, respectively. The main improvement in the precision increases from 0.80 and 0.86 for WMLC and thresholding to 0.96 for WMRF. The WMRF model accurately distinguishes classes that have a similar backscatter, like water and bare soil. Hence, the high accuracy of the proposed WMRF model is a result of its robustness for water detection from Single Look Complex data. We conclude that the proposed model is a great improvement on existing methods for the detection of calm surface water bodies. Key Points: A complex Wishart Markov Random Fields (WMRF) is defined as a supervised contextual classification model for surface water detectionUsing MRFs, we use the geometry of surface water to tackle speckle in Single Look Complex (SLC) SAR images and improve classificationThe WMRF model can accurately classify classes with poor class separability
- Subjects
SENTINEL-1 (Artificial satellite); WATER; MARKOV random fields; SYNTHETIC aperture radar; WATER supply; GEOMETRIC surfaces
- Publication
Water Resources Research, 2019, Vol 55, Issue 8, p7047
- ISSN
0043-1397
- Publication type
Article
- DOI
10.1029/2019WR025192