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The subband modulation: a joint power and rate allocation frameworkfor subband image and video transmission

机译:子带调制:用于子带图像和视频传输的联合功率和速率分配框架

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摘要

A new approach of reliable image and video transmission over noisy channels is proposed. For subband decomposed image and video, combined source coding and channel modulation design can achieve high compression efficiency and preferable quality. Further performance gain is obtained by multiresolution modulation as well as a bit remapping scheme that assigns efficient mapping from each source codeword to channel modulation points. We show that the combined source coding and modulation design outperforms conventional approaches, which design source coding and modulation separately. A simple channel distortion approximation is derived by applying a bit-remapping scheme, which allows the power allocation to be employed to further enhance the performance. Compared to the joint source and channel coding with a binary phase shift keying modulation system and fixed modulation with the one-to-one intelligent mapping system, the proposed system performs better in a middle-range signal-to-noise ratio and low channel bandwidth. The simulation is carried out on additive white Gaussian noise channels
机译:提出了一种在噪声通道上可靠的图像和视频传输的新方法。对于子带分解的图像和视频,组合的源编码和信道调制设计可以实现较高的压缩效率和较好的质量。通过多分辨率调制以及位重新映射方案(从每个源代码字到通道调制点分配有效映射),可以获得更高的性能增益。我们表明,组合的源代码编码和调制设计优于传统方法,后者分别设计源代码编码和调制。通过应用位重新映射方案可以得出简单的信道失真近似值,该方案允许采用功率分配来进一步增强性能。与采用二进制相移键控调制系统的联合源和信道编码以及采用一对一智能映射系统的固定调制相比,该系统在中等范围的信噪比和低信道带宽下表现更好。在加性高斯白噪声通道上进行仿真

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