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Resolution Scalable Image Coding with Dyadic Complementary Rational Wavelet Transforms

机译:用二元互补理性小波变换进行分辨率可伸缩图像编码

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Traditional wavelet-based image coders use dyadic multi-resolution decompositions, resulting in spatial resolutions that are also dyadic in scale, i.e., powers of 1/2 the original resolution. In this paper, we increase the set of decodable spatial resolutions beyond dyadic scales by introducing a two-dimensional wavelet decomposition made of combining wavelet transforms of non-integer dilation factors. We describe how the proposed wavelet decomposition can produce spatial resolutions related to the original resolution by dyadic and non-dyadic ratios, and present how the resulting subband structure can be made compatible with zerotree-based subband coders.
机译:传统的基于小波的图像编码器使用Dyadic多分辨率分解,导致空间分辨率,也是单个分数,即1/2原始分辨率的力量。在本文中,我们通过引入由非整数扩张因子的组合小波变换组合的二维小波分解来增加二次小波分解的可解码空间分辨率。我们描述了所提出的小波分解可以产生与原始分辨率相关的空间分辨率,并通过基于Zerotree的子带编码器兼容所得的子带结构。

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