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Atkinson S., Machin A., Graf M., Hageland M., Nashi A., Taylor R., Ayers D., Ray B. and Wiggers Ch. (2001): Professional Java Mobile Programming. —- Chicago: Wrox Press Ltd., (R. Ashri, Ed.).Search in Google Scholar

Baharav Z., Malah D. and Karnin E. (1993): Hierarchical interpretation of fractal image coding and its application to fast decoding. — Proc. Int. Conf. Digital Signal Processing, Levkosia, Cyprus, pp. 190-195.Search in Google Scholar

Beers A., Agrawala M. and Chadda N. (1996): Rendering for compressed textures. — Proc. Int. Conf. Computer Graphics and Interactive Techniques, SIGGRAPH, New Orleans, USA, pp. 373-378.10.1145/237170.237276Search in Google Scholar

Bury S. (2004): Fractal imaging on mobile phones. — M.Sc. thesis, University of Zielona Góra, Poland (in Polish).Search in Google Scholar

Chen C. and Lee C. (2002): A JPEG-like texture compression with adaptive quantization for 3D graphics application. — The Visual Computer, Vol. 18, No. 1, pp. 29-40.10.1007/s003710100130Search in Google Scholar

Cisar G. (1996): On Entropy Coding Fisher's Fractal Quad Tree Code. — Tech. Rep., Institut fur Informatik, University of Freiburg, Germany.Search in Google Scholar

Condissi N., DiVerdi T. and Hoeller T. (2005): Real-time rendering with wavelet-compressed multi-dimensional textures on the GPU. — Tech. Rep. 2005.05, Comput. Sci.,University of California, Santa Barbara.Search in Google Scholar

Delp E. and Mitchell O. (1979): Image compression using block truncation coding. — IEEE Trans. Commun., Vol. 2, No. 9, pp. 1335-1342.10.1109/TCOM.1979.1094560Search in Google Scholar

Fisher Y. (1995): Fractal Image Compression: Theory and Application. — London: Springer.10.1007/978-1-4612-2472-3Search in Google Scholar

Ghulam M, Falai C. and Zhangijn H. (2004): Ternary wavelets and their applications to signal compression. — Int. J. Appl. Math. Comput. Sci., Vol. 14, No. 2, pp. 233-240.Search in Google Scholar

Knittel G., Shilling A., Kugler A. and Strasser W. (1996): Hardware for superior texture performance. — Comput. Graphics, Vol. 20, No. 4, pp. 475-481.10.1016/0097-8493(96)00019-2Search in Google Scholar

Kwon Y., Park I. and Kyung Ch. (2000): Pyramid texture compression and decompression using interpolative vector quantization. — Pro. Int. Conf. Image Processing, Vancouver, Canada, Vol. 2., pp. 89-106.Search in Google Scholar

Malah D. and Sutskover I. (1999): Hierarchical Fast Decoding of Fractal Image Representation Using Quadtree Partitioning. — Technion, Israel: I.I.T.10.1049/cp:19990389Search in Google Scholar

Microsoft (1997): Escalante hardware overview — Talisman. — Graph. Multimedia Syst., Vol. 18, No. 1, pp. 89-106.Search in Google Scholar

Nikiel S. and Moczulski M. (2006): Image acquisition and segmentation on mobile devices. — Proc. Nat. Conf. Measurement Systems, SP, Łgów, Poland, pp. 69-70, (in Polish).Search in Google Scholar

Pazio M. and Cisowski K. (2005): Application of colour image segmentation for localization and extraction text from images. — Proc. Conf. Poznań Telecommunication Workshops, PWT, Ponañ, Poland pp. 134-137.Search in Google Scholar

Perebrin A. (1999): Hierarchical approach to texture compression. — Proc. Conf. GRAPHICON, San Francisco, USA, pp. 195-199.Search in Google Scholar

Skarbek W. (1998): Rough sets and current trends in computing. — Proc. 1st Int. Conf. Rough Sets and Current Trends in Computing, RSCTC, Warsaw, Poland, pp. 441-453.Search in Google Scholar

Stachera J. and Rokita P. (2006): GPU-based hierarchical texture decompression. — Proc. Int. Conf. Eurographics, Vienna, Austria, (on DVD).Search in Google Scholar

Stachera J. and Nikiel S. (2004): Fractal image compression for efficient texture mapping. — Proc. Int. Conf. Winter School on Computer Graphics, WSCG Plzen, Czech Republic, pp. 169-172.Search in Google Scholar

ISSN:
1641-876X
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Mathematics, Applied Mathematics