可变速率多阶段矢量量化图像编码

Yo-Sung Ho, A. Gersho
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引用次数: 61

摘要

描述了一种使用矢量量化(VQ)编码图像的分层方法,该方法允许大块的VQ具有可容忍的计算复杂性,并允许以低至0.3比特/像素的比特率进行渐进图像重建。所使用的多阶段分层VQ (MSHVQ)技术是一种量化的连续逼近方法,它基于将较大的图像块递归分解为较小的子块。MSHVQ的编码器由几个阶段组成,每个阶段对前一阶段产生的量化误差进行编码。数字抽取和插值技术用于在较高级别的不同矢量维度之间进行转换,并减少重建图像中非常明显的阻塞效应。可变速率编码通过为高细节区域分配更高的分辨率来提高压缩效率,并在解码图像的所有区域提供感知上更一致的图像质量。实验结果表明,在相同复杂度的情况下,MSHVQ的图像质量明显优于传统的VQ。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variable-rate multi-stage vector quantization for image coding
A hierarchical approach to encoding of images using vector quantization (VQ) is described which allows VQ of large blocks with a tolerable computational complexity and permits progressive image reconstruction at bit rates as low as 0.3 bit/pixel. The technique used, multi-stage hierarchical VQ (MSHVQ), is a successive approximation approach for quantization that is based on recursive decomposition of larger image blocks into smaller subblocks. The encoder of MSHVQ consists of several stages, each of which encodes the quantization error generated from the previous stage. Digital decimation and interpolation techniques are used to convert between different vector dimensions in the higher level stages and to reduce the otherwise highly noticeable blocking effect in the reconstructed image. Variable-rate encoding increases the compression efficiency by allocating greater resolution to high-detail regions and provides a perceptually more consistent image quality throughout all areas of the decoded image. Experimental results show that MSHVQ yields a significantly improved image quality over conventional VQ of equivalent complexity.<>
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