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Image coding with robust channel-optimized trellis-coded quantization

机译:具有鲁棒的通道优化网格编码量化的图像编码

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摘要

This paper presents a wavelet-based image coder that is optimized for transmission over the binary symmetric channel (BSC). The proposed coder uses a robust channel-optimized trellis-coded quantization (COTCQ) stage that is designed to optimize the image coding based on the channel characteristics. A phase scrambling stage is also used to further increase the coding performance and robustness to nonstationary signals and channels. The resilience to channel errors is obtained by optimizing the coder performance only at the level of the source encoder with no explicit channel coding for error protection. For the considered TCQ trellis structure, a general expression is derived for the transition probability matrix. In terms of the TCQ encoding rat and the channel bit error rate, and is used to design the COTCQ stage of the image coder. The robust nature of the coder also increases the security level of the encoded bit stream and provides a much more visually pleasing rendition of the decoded image. Examples are presented to illustrate the performance of the proposed robust image coder.
机译:本文提出了一种基于小波的图像编码器,该编码器针对二进制对称信道(BSC)的传输进行了优化。所提出的编码器使用了鲁棒的信道优化网格编码量化(COTCQ)阶段,该阶段被设计为基于信道特性来优化图像编码。相位加扰级还用于进一步提高编码性能以及对非平稳信号和信道的鲁棒性。通过仅在源编码器级别上优​​化编码器性能即可获得对信道错误的恢复能力,而没有用于错误保护的显式信道编码。对于所考虑的TCQ网格结构,导出了过渡概率矩阵的一般表达式。就TCQ编码率和信道误码率而言,并被用来设计图像编码器的COTCQ级。编码器的鲁棒性还提高了编码比特流的安全级别,并提供了视觉上令人愉悦的解码图像再现。给出示例以说明所提出的鲁棒图像编码器的性能。

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