Raguram Rahul, Marcellin Michael W, Bilgin Ali
Department of Electrical and Computer Engineering, University of Arizona, Tucson, AZ 85721, USA.
IEEE Trans Image Process. 2009 Apr;18(4):774-82. doi: 10.1109/TIP.2008.2011455. Epub 2009 Feb 18.
In this paper, we address issues concerning bilevel image compression using JPEG2000. While JPEG2000 is designed to compress both bilevel and continuous tone image data using a single unified framework, there exist significant limitations with respect to its use in the lossless compression of bilevel imagery. In particular, substantial degradation in image quality at low resolutions severely limits the resolution scalable features of the JPEG2000 code-stream. We examine these effects and present two efficient methods to improve resolution scalability for bilevel imagery in JPEG2000. By analyzing the sequence of rounding operations performed in the JPEG2000 lossless compression pathway, we introduce a simple pixel assignment scheme that improves image quality for commonly occurring types of bilevel imagery. Additionally, we develop a more general strategy based on the JPIP protocol, which enables efficient interactive access of compressed bilevel imagery. It may be noted that both proposed methods are fully compliant with Part 1 of the JPEG2000 standard.
在本文中,我们探讨了使用JPEG2000进行二值图像压缩的相关问题。虽然JPEG2000旨在使用单一统一框架对二值图像和连续色调图像数据进行压缩,但在其用于二值图像无损压缩方面存在重大限制。特别是,低分辨率下图像质量的显著下降严重限制了JPEG2000码流的分辨率可扩展性。我们研究了这些影响,并提出了两种有效方法来提高JPEG2000中二值图像的分辨率可扩展性。通过分析JPEG2000无损压缩路径中执行的舍入操作序列,我们引入了一种简单的像素分配方案,可提高常见类型二值图像的质量。此外,我们基于JPIP协议开发了一种更通用的策略,可实现对压缩二值图像的高效交互式访问。需要注意的是,所提出的两种方法均完全符合JPEG2000标准的第1部分。