JPEG2000中基于双正交小波增益的失真加权

B. Fortener, E. Balster
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引用次数: 0

摘要

JPEG2000是最新的图像压缩标准,联合摄影专家组(JPEG)委员会于2004年9月批准了该标准的第1部分第二版。JPEG2000压缩系统通过使用小波变换和具有最佳截断的嵌入式块编码(EBCOT)技术改进了原始JPEG压缩标准,该技术允许比JPEG平均压缩30%左右。EBCOT依赖于一个称为MQ编码器的算术熵编码器,该编码器处理数据并输出存储在JPEG2000文件中的最终图像位流。在MQ编码器之后,可以在编码过程中定义的点截断比特流,并且这种截断可以最佳地完成,以最小化引入解码图像的失真量。这种最佳截断依赖于对构成图像的每个位进行失真计算。为了正确地计算这种比特失真,权重被应用到平方误差计算中,以一种考虑与JPEG2000中使用的双正交小波变换相关的增益的方式缩放产生的失真。本文给出了这些权重的推导背景,以及它们在最优截断过程中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distortion weighting based on biorthogonal wavelet gain in JPEG2000
JPEG2000 is the latest standard in image compression with the Joint Photographic Experts Group (JPEG) committee ratifying Part 1, second edition of the standard in September 2004. The JPEG2000 compression system improves upon the original JPEG compression standard through the use of a wavelet transform and an Embedded Block Coding with Optimal Truncation (EBCOT) technique that allows for a compression advantage over JPEG of about 30 percent on average. EBCOT depends on an arithmetic entropy coder called the MQ Coder that processes data and outputs the final image bit-stream that is stored in a JPEG2000 file. After the MQ Coder, the bit-stream can be truncated at points defined during the encoding process, and this truncation may be done optimally to minimize the amount of distortion introduced to the decoded image. This optimal truncation relies on a distortion calculation for every bit that makes up an image. In order to properly calculate this bit-distortion, weights are applied to a squared-error calculation, scaling the resulting distortion in a manner that accounts for the gain associated with the biorthogonal wavelet transform used in JPEG2000. This paper gives a background on the derivation of these weights and where they are applied in the optimal truncation process.
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