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Progressive transmission of images using MAP detection over channels with memory

机译:在具有存储器的通道上使用MAP检测逐步传输图像

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We propose a new maximum a posteriori (MAP) detector, without the need for explicit channel coding, to lessen the impact of communication channel errors on compressed image sources. The MAP detector exploits the spatial correlation in the compressed bitstream as well as the temporal memory in the channel to correct channel errors. We first present a technique for computing the residual redundancy inherent in a compressed grayscale image (compressed using VQ). The performance of the proposed MAP detector is compared to that of a memoryless MAP detector. We also investigate the dependence of the performance on memory characteristics of the Gilbert-Elliott channel as well as average channel error rate. Finally, we study the robustness of the proposed MAP detector's performance to estimation errors.
机译:我们提出了一种新的最大后验(MAP)检测器,无需显式的信道编码,以减少通信信道错误对压缩图像源的影响。 MAP检测器利用压缩位流中的空间相关性以及通道中的时间存储器来校正通道错误。我们首先提出一种技术,用于计算压缩的灰度图像(使用VQ压缩)中固有的剩余冗余。将拟议的MAP检测器的性能与无记忆MAP检测器的性能进行比较。我们还研究了性能对Gilbert-Elliott通道的存储特征以及平均通道错误率的依赖性。最后,我们研究了所提出的MAP检测器性能对估计误差的鲁棒性。

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