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Joint Optimization of Run-Length Coding, Huffman Coding, and Quantization Table With Complete Baseline JPEG Decoder Compatibility

机译:具有完整基线JPEG解码器兼容性的行程编码,霍夫曼编码和量化表的联合优化

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摘要

To maximize rate distortion performance while remaining faithful to the JPEG syntax, the joint optimization of the Huffman tables, quantization step sizes, and DCT indices of a JPEG encoder is investigated. Given Huffman tables and quantization step sizes, an efficient graph-based algorithm is first proposed to find the optimal DCT indices in the form of run-size pairs. Based on this graph-based algorithm, an iterative algorithm is then presented to jointly optimize run-length coding, Huffman coding, and quantization table selection. The proposed iterative algorithm not only results in a compressed bitstream completely compatible with existing JPEG and MPEG decoders, but is also computationally efficient. Furthermore, when tested over standard test images, it achieves the best JPEG compression results, to the extent that its own JPEG compression performance even exceeds the quoted PSNR results of some state-of-the-art wavelet-based image coders such as Shapiro's embedded zerotree wavelet algorithm at the common bit rates under comparison. Both the graph-based algorithm and the iterative algorithm can be applied to application areas such as web image acceleration, digital camera image compression, MPEG frame optimization, and transcoding, etc.
机译:为了在保持忠实于JPEG语法的同时最大化速率失真性能,研究了霍夫曼表,量化步长和JPEG编码器的DCT索引的联合优化。给定霍夫曼表和量化步长,首先提出一种基于图的有效算法,以游程对的形式找到最佳DCT索引。基于此基于图的算法,然后提出一种迭代算法,以共同优化行程编码,霍夫曼编码和量化表选择。所提出的迭代算法不仅导致压缩比特流与现有的JPEG和MPEG解码器完全兼容,而且计算效率高。此外,在标准测试图像上进行测试时,它可以获得最佳的JPEG压缩结果,其程度是JPEG自身的JPEG压缩性能甚至超过了一些基于小波的最新图像编码器(如Shapiro嵌入式)所引用的PSNR结果。零树小波算法在常见比特率下的比较。基于图的算法和迭代算法都可以应用于Web图像加速,数字相机图像压缩,MPEG帧优化和代码转换等应用领域。

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