DocumentCode :
3432340
Title :
Robust image coding with perceptual-based scalability
Author :
Ramos, Marcia G. ; Hemami, Sheila S.
Author_Institution :
Sch. of Electr. Eng., Cornell Univ., Ithaca, NY, USA
fYear :
1997
fDate :
25-27 Mar 1997
Firstpage :
466
Abstract :
Summary form only given. We present a multiresolution-based image coding technique that achieves high visual quality through perceptual-based scalability and robustness to transmission errors. To achieve perceptual coding, the image is first segmented at a block level (16×16) into smooth, edge, and highly-detailed regions, using the Holder regularity property of the wavelet coefficients as well as their distributions. The activity classifications are used when coding the high-frequency wavelet coefficients. The image is compressed by first performing a 3-level hierarchical decomposition, yielding 10 subbands which are coded independently. The LL band is coded using reconstruction-optimized lapped orthogonal transforms, followed by quantization, runlength encoding, and Huffman coding. The high-frequency coefficients corresponding to the smooth regions are quantized to zero. The high-frequency coefficients corresponding to the edge regions are uniformly quantized, to maintain Holder regularity and sharpness of the edges, while those corresponding to the highly-detailed regions are quantized with a modified uniform quantizer with a dead zone. Bits are allocated based on the scale and orientation selectivity of each high-frequency subband as well as the activity regions inside each band corresponding to the edge and highly-detailed regions of the image. The quantized high-frequency bands are then run-length encoded
Keywords :
Huffman codes; image coding; image reconstruction; image resolution; image segmentation; runlength codes; transform coding; wavelet transforms; Holder regularity; Huffman coding; activity classifications; edge regions; hierarchical decomposition; high-frequency subband; high-frequency wavelet coefficients; highly detailed regions; image compression; image segmentation; multiresolution based image coding; perceptual based scalability; perceptual coding; quantization; reconstruction optimized lapped orthogonal transforms; runlength encoding; smooth regions; transmission errors; Encoding; Huffman coding; Image coding; Image reconstruction; Image resolution; Image segmentation; Quantization; Robustness; Scalability; Wavelet coefficients;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Data Compression Conference, 1997. DCC '97. Proceedings
Conference_Location :
Snowbird, UT
ISSN :
1068-0314
Print_ISBN :
0-8186-7761-9
Type :
conf
DOI :
10.1109/DCC.1997.582133
Filename :
582133
Link To Document :
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