DocumentCode
1258388
Title
Extended fractal analysis for texture classification and segmentation
Author
Kaplan, Lance M.
Author_Institution
Centre for Theor. Studies of Phys. Syst., Clark Atlanta Univ., GA, USA
Volume
8
Issue
11
fYear
1999
fDate
11/1/1999 12:00:00 AM
Firstpage
1572
Lastpage
1585
Abstract
The Hurst parameter for two-dimensional (2-D) fractional Brownian motion (fBm) provides a single number that completely characterizes isotropic textured surfaces whose roughness is scale-invariant. Extended self-similar (ESS) processes were previously introduced in order to provide a generalization of fBm. These new processes are described by a number of multiscale Hurst parameters. In contrast to the single Hurst parameter, the extended parameters are able to characterize a greater variety of natural textures where the roughness of these textures is not necessarily scale-invariant. In this work, we evaluate the effectiveness of multiscale Hurst parameters as features for texture classification and segmentation. For texture classification, the performance of the generalized Hurst features is compared to traditional Hurst and Gabor features. Our experiments show that classification accuracy for the generalized Hurst and Gabor features are comparable even though the generalized Hurst features lower the dimensionality by a factor of five. Next, the segmentation accuracy using generalized and standard Hurst features is evaluated on images of texture mosaics. For these experiments, the performance is evaluated with and without supplemental contrast and average grayscale features. Finally, we investigate the effectiveness of the Hurst features to segment real synthetic aperture radar (SAR) imagery
Keywords
Brownian motion; fractals; image classification; image segmentation; image texture; radar imaging; synthetic aperture radar; ESS processes; Hurst parameter; SAR imagery; average grayscale feature; contrast feature; dimensionality; extended fractal analysis; extended self-similar processes; fBm; isotropic textured surfaces; real synthetic aperture radar imagery; roughness; segmentation; texture classification; two-dimensional fractional Brownian motion; Brownian motion; Electronic switching systems; Fractals; Gray-scale; Image segmentation; Rough surfaces; Surface roughness; Surface texture; Synthetic aperture radar; Two dimensional displays;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/83.799885
Filename
799885
Link To Document