Department of Electrical Engineering, University of Missouri-Columbia, Columbia, MO 65211, USA.
IEEE Trans Image Process. 2002;11(11):1305-13. doi: 10.1109/TIP.2002.804525.
In this paper, we propose a novel combined source and channel coding scheme for image transmission over noisy channels. The main feature of the proposed scheme is a systematic decomposition of image sources so that unequal error protection can be applied according to not only bit error sensitivity but also visual content importance. The wavelet transform is adopted to hierarchically decompose the image. The association between the wavelet coefficients and what they represent spatially in the original image is fully exploited so that wavelet blocks are classified based on their corresponding image content. The classification produces wavelet blocks in each class with similar content and statistics, therefore enables high performance source compression using the set partitioning in hierarchical trees (SPIHT) algorithm. To combat the channel noise, an unequal error protection strategy with rate-compatible punctured convolutional/cyclic redundancy check (RCPC/CRC) codes is implemented based on the bit contribution to both peak signal-to-noise ratio (PSNR) and visual quality. At the receiving end, a postprocessing method making use of the SPIHT decoding structure and the classification map is developed to restore the degradation due to the residual error after channel decoding. Experimental results show that the proposed scheme is indeed able to provide protection both for the bits that are more sensitive to errors and for the more important visual content under a noisy transmission environment. In particular, the reconstructed images illustrate consistently better visual quality than using the single-bitstream-based schemes.
在本文中,我们提出了一种新颖的联合信源信道编码方案,用于在噪声信道上传输图像。所提出方案的主要特点是对图像源进行系统分解,以便不仅根据位错误敏感性,而且根据视觉内容重要性应用不等错误保护。采用小波变换对图像进行分层分解。充分利用小波系数与其在原始图像中空间表示之间的关联,以便根据相应的图像内容对小波块进行分类。分类产生每个类中具有相似内容和统计特性的小波块,因此可以使用分层树的集合划分(SPIHT)算法实现高性能源压缩。为了克服信道噪声,根据对峰值信噪比(PSNR)和视觉质量的比特贡献,实现了具有速率兼容穿孔卷积/循环冗余校验(RCPC/CRC)码的不等错误保护策略。在接收端,开发了一种利用 SPIHT 解码结构和分类图的后处理方法,以恢复信道解码后残留误差引起的降级。实验结果表明,所提出的方案确实能够在噪声传输环境下为更敏感的错误比特和更重要的视觉内容提供保护。特别是,重建图像始终显示出比使用单比特流方案更好的视觉质量。