Comparative study of texture detection and classification algorithms
Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 51 (2011) no. 8, pp. 1561-1568 Cet article a éte moissonné depuis la source Math-Net.Ru

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A description and results of application of the computer system PETRA (performance evaluation of texture recognition algorithms) are given. This system is designed for the comparative study of texture analysis algorithms; it includes a database of textured images and a collection of software implementations of texture analysis algorithms. The functional capabilities of the system are illustrated using texture classification examples. Test examples are taken from the Brodatz album, MeasTech database, and a set of aerospace images. Results of a comparative evaluation of five well-known texture analysis methods are described – Gabor filters, Laws masks, ring/wedge filters, gray-level cooccurrence matrices (GLCMs), and autoregression image model.
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P. P. Koltsov. Comparative study of texture detection and classification algorithms. Žurnal vyčislitelʹnoj matematiki i matematičeskoj fiziki, Tome 51 (2011) no. 8, pp. 1561-1568. http://geodesic.mathdoc.fr/item/ZVMMF_2011_51_8_a16/

[1] Ojala T., Pietikainen M., Harwood D., “A Comparative study of texture measures with classification based on feature distributions”, Pattern Recognition and Image Analys, 29:1 (1996), 51–59 | DOI

[2] Randen T., Husoy J. H., 291–310, IEEE Trans. on Pattern Analysis and Machine Intelligence, 21, no. 4, 1999 | DOI

[3] Brodatz P., Textures: photographic album for artists and designers, Dover publs, Inc., N. Y., 1966

[4] Smith G., Bums I., “Measuring texture classification algorithms”, Pattern Recognition Letters, 18:14 (1997), 1495–1501 | DOI | Zbl

[5] Ojala T., Mäenpää T., Pietikäinen M. et al., “Outex – new framework for empirical evaluation of texture analysis algorithms”, 16th Int. Conf. on Pattern Recognition, v. 1, 2002, 701–706

[6] Karu K., Jain A. K., Bolle R. M., “Is there any texture in the image?”, Pattern Recognition and Image Analys, 29:9 (1996), 1437–1446 | DOI

[7] Dinstein I., Fong A. C., Ni L. M., Wong K. Y., “Fast discrimination between homogeneous and textured regions”, Proc. Seventh Internat. Conf. on Pattern Recognition, v. 1, 1984, 361–366

[8] Strasters K. C., Gerbrands J. J., “Three-dimensional image segmentation using a split, merge and group approach”, Pattern Recognition Letters, 12:5 (1991), 307–325 | DOI

[9] Malik J., Perona P., “Preattentive texture discrimination with early vision mechanisms”, J. Opt. Soc. Amer., 7 (1990), 923–932 | DOI

[10] Jain A. K., Farrokhnia F., “Unsupervised texture segmentation using gabor filters”, Pattern Recognition and Image Analys, 24:12 (1991), 1167–1186 | DOI

[11] Laws K. I., “Rapid texture identification”, Proc. SPIE Conf. Image Processing for Missile Guidance, 1980, 376–380

[12] Coggins J. M., Jain A. K., “A spatial filtering approach to texture analysis”, Pattern Recognition Letters, 3:3 (1985), 195–203 | DOI

[13] Haralick R., Shanmugam K., Dinstein I., “Textural features for image classification”, IEEE Trans. Systems, Man, Cybernetics, 3:11 (1973), 610–621 | DOI | MR

[14] Mao J., Jain A. K., “Texture classification and segmentation using multiresolution simultaneous autoregressive models”, Pattern Recognition and Image Analys, 25:2 (1992), 173–188 | DOI