DocumentCode :
2477061
Title :
Low bit rate image coding in the scale space
Author :
Li, Xin
Author_Institution :
Sharp Labs. of America, Camas, WA, USA
fYear :
2002
fDate :
2002
Firstpage :
33
Lastpage :
42
Abstract :
Scale-space representation has been extensively studied in the computer vision community for analyzing image structures at different scales. This paper borrows and develops useful mathematical tools from scale-space theory to facilitate the task of image compression. Instead of compressing the original image directly, we propose to compress its scale-space representation obtained by the forward diffusion with a Gaussian kernel at the chosen scale. The major contribution of this work is a novel solution to the ill-posed inverse diffusion problem. We analytically derive a nonlinear filter to deblur Gaussian blurring for 1D ideal step edges. The generalized 2D edge enhancing filter only requires the knowledge of local minimum/maximum and preserves the geometric constraint of edges. When combined with a standard wavelet-based image coder, the forward and inverse diffusion can be viewed as a pair of pre-processing and post-processing stages used to select and preserve important image features at the given bit rate. Experiment results have shown that the proposed diffusion-based techniques can dramatically improve the visual quality of reconstructed images at low bit rate (below 0.25bpp).
Keywords :
Gaussian processes; computer vision; data compression; filtering theory; image coding; image reconstruction; image representation; nonlinear filters; transform coding; wavelet transforms; 1D ideal step edges; Gaussian blurring; Gaussian kernel; computer vision; forward diffusion; generalized 2D edge enhancing filter; geometric constraint; ill-posed inverse diffusion problem; image compression; image features; image structure analysis; inverse diffusion; local minimum/maximum; low bit rate image coding; nonlinear filter; reconstructed image visual quality; scale-space representation; scale-space theory; wavelet-based image coder; Bit rate; Computed tomography; Data compression; Image coding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Data Compression Conference, 2002. Proceedings. DCC 2002
ISSN :
1068-0314
Print_ISBN :
0-7695-1477-4
Type :
conf
DOI :
10.1109/DCC.2002.999941
Filename :
999941
Link To Document :
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