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首页> 外文期刊>IEE Proceedings. Part K >Entropy-coded pyramid vector quantisation for interband wavelet image coding
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Entropy-coded pyramid vector quantisation for interband wavelet image coding

机译:带间小波图像编码的熵编码金字塔矢量量化

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摘要

Novel class-based entropy coding algorithms for lattice quantised hierarchical (or interband) vectors are presented. The vectors are formed from wavelet coefficients on different scales from similarly oriented sub-bands corresponding to the same spatial location. Structures have been designed specifically for interband vectors drawn from wavelet coefficients, where large groups of approximately equiprobable lattice points are grouped into relatively few classes, known as sub-classes, super-classes and super-super-classes, enabling accurate probability estimates from training data to be obtained for entropy coding of the class indices. Further, it has been found that the best quantiser is a combination of the Z/sub n/, and D/sub n/ lattices which has been termed an augmented lattice. The performance of the method, entitled entropy-coded pyramid vector quantisation (ECPVQ), is evaluated on real images and the results show that ECPVQ is competitive, particularly at low bit-rates, with current state-of-the-art wavelet-based coders. A subjective comparison with current high performance scalar quantisation based coders shows that ECPVQ is likely to better preserve fine texture detail in the decoded images because of the finer quantisation of low energy wavelet coefficients that occurs with the augmented lattice.
机译:提出了新颖的基于类的熵编码算法,用于格量化的分层(或带间)矢量。向量是由对应于相同空间位置的相似方向的子带以不同比例的小波系数形成的。专门针对从小波系数得出的带间矢量设计了结构,其中,将近似等概率晶格点的大组分为相对较少的几类,这些子类称为子类,超类和超超类,从而可以从训练中进行准确的概率估计用于类别索引的熵编码的数据。此外,已经发现最好的量化器是Z / sub n /和D / sub n /晶格的组合,其被称为增强晶格。在真实图像上评估了名为熵编码金字塔矢量量化(ECPVQ)的方法的性能,结果表明,基于当前最新的基于小波的方法,ECPVQ具有竞争力,尤其是在低比特率下编码员。与当前基于高性能标量量化的编码器进行的主观比较显示,由于随增强格点发生的低能小波系数的更精细量化,ECPVQ可能更好地保留了解码图像中的精细纹理细节。

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