DocumentCode
3861811
Title
On the selection of an optimal wavelet basis for texture characterization
Author
A. Mojsilovic;M.V. Popovic;D.M. Rackov
Author_Institution
IBM Thomas J. Watson Res. Center, Yorktown Heights, NY, USA
Volume
9
Issue
12
fYear
2000
Firstpage
2043
Lastpage
2050
Abstract
Although most of the theoretical and implementation aspects of wavelet based algorithms in texture characterization are well studied and understood, many issues related to the choice of filter bank in texture processing remain unresolved. The impact of the wavelet basis has been mentioned in a few papers, whereas other more detailed investigations have considered only the choice of the wavelet basis in image coding. For example, regularity, number of vanishing moments and a shift variance degree have been used for the filter evaluation in image coding, but the utility of all these metrics in texture analysis has not yet been established. Therefore, the scope of this paper was to investigate whether the properties of decomposition filters play an important role in texture description, and which feature is dominant in the selection of an optimal filter bank. We performed classification experiments with 23 Brodatz textures. Our investigation shows that the selection of the decomposition filters has a significant influence on the result of texture characterization. Finally, the paper ranks 19 orthogonal and biorthogonal filters, and establishes the most relevant criteria for choice of decomposition filters in wavelet-based texture characterization algorithms.
Keywords
"Filter bank","Finite impulse response filter","Image coding","Discrete wavelet transforms","Nonlinear filters","Analysis of variance","Image analysis","Image texture analysis","Wavelet transforms","Discrete transforms"
Journal_Title
IEEE Transactions on Image Processing
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/83.887972
Filename
887972
Link To Document