DocumentCode
3157702
Title
A comparative study of three moment-based shape descriptors
Author
Celebi, M. Emre ; Aslandogan, Y. Alp
Author_Institution
Dept. of Comput. Sci. & Eng., Univ. of Texas at Arlington, TX, USA
Volume
1
fYear
2005
fDate
4-6 April 2005
Firstpage
788
Abstract
Shape is one of the fundamental visual features in the content-based image retrieval (CBIR) paradigm. Numerous shape descriptors have been proposed in the literature. These can be broadly categorized as region-based and contour-based descriptors. Contour-based shape descriptors make use of only the boundary information, ignoring the shape interior content. Therefore, these descriptors cannot represent shapes for which the complete boundary information is not available. On the other hand, region-based descriptors exploit both boundary and internal pixels, and therefore are applicable to generic shapes. Among the region-based descriptors, moments have been very popular since they were first introduced in the 60´s. In this paper, we study and compare three moment-based descriptors: Invariant moments, Zernike moments, and radial Chebyshev moments. Experiments on the MPEG-7 shape databases show that radial Chebyshev moments achieve the highest retrieval performance.
Keywords
Chebyshev approximation; Zernike polynomials; content-based retrieval; image representation; image retrieval; visual databases; MPEG-7 shape databases; Zernike moments; boundary information; content-based image retrieval paradigm; contour-based shape descriptors; internal pixels; invariant moments; radial Chebyshev moments; region-based shape descriptors; shape interior content; three moment-based shape descriptors; Chebyshev approximation; Computer science; Content based retrieval; Image databases; Image retrieval; Information retrieval; MPEG 7 Standard; Shape measurement; Spatial databases; Visual databases;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Technology: Coding and Computing, 2005. ITCC 2005. International Conference on
Print_ISBN
0-7695-2315-3
Type
conf
DOI
10.1109/ITCC.2005.3
Filename
1428560
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