Title :
Analytic Expressions for Stochastic Distances Between Relaxed Complex Wishart Distributions
Author :
Frery, Alejandro C. ; Nascimento, Abraao D. C. ; Cintra, Renato J.
Author_Institution :
Inst. de Comput., Univ. Fed. de Alagoas, Maceio, Brazil
Abstract :
The scaled complex Wishart distribution is a widely used model for multilook full polarimetric synthetic aperture radar data whose adequacy is attested in this paper. Classification, segmentation, and image analysis techniques that depend on this model are devised, and many of them employ some type of dissimilarity measure. In this paper, we derive analytic expressions for four stochastic distances between relaxed scaled complex Wishart distributions in their most general form and in important particular cases. Using these distances, inequalities are obtained that lead to new ways of deriving the Bartlett and revised Wishart distances. The expressiveness of the four analytic distances is assessed with respect to the variation of parameters. Such distances are then used for deriving new tests statistics, which are proved to have asymptotic chi-square distribution. Adopting the test size as a comparison criterion, a sensitivity study is performed by means of Monte Carlo experiments suggesting that the Bhattacharyya statistic outperforms all the others. The power of the tests is also assessed. Applications to actual data illustrate the discrimination and homogeneity identification capabilities of these distances.
Keywords :
Monte Carlo methods; image classification; image segmentation; radar imaging; radar polarimetry; statistical distributions; statistical testing; stochastic processes; synthetic aperture radar; Bartlett distance; Bhattacharyya statistic; Monte Carlo method; PolSAR; Wishart distance; asymptotic chi-square distribution; dissimilarity measure; image analysis technique; image classification; image segmentation; multilook full polarimetric synthetic aperture radar; relaxed complex Wishart distribution; stochastic distance; test statistics; Contrast measures; image analysis; information theory; polarimetric radar; statistics;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2013.2248737