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Real-time unequal error protection algorithms for progressive image transmission

机译:渐进图像传输的实时不等误差保护算法

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摘要

We consider unequal error protection strategies for the efficient progressive transmission of embedded image codes over noisy channels. In progressive transmission, the reconstruction quality is important not only at the target transmission rate but also at the intermediate rates. An adequate error protection strategy may, thus, consist of optimizing the average performance over the set of intermediate rates. The performance can be the expected number of correctly decoded source bits or the expected distortion. For the rate-based performance, we prove some interesting properties of an optimal solution and give an optimal linear-time algorithm to compute it. For the distortion-based performance, we propose an efficient linear-time local search algorithm. For a binary symmetric channel, two state-of-the-art source coders (SPIHT and JPEG2000), we compare the progressive ability of our proposed solutions to that of the strategies that optimize the end-to-end performance of the system. Experimental results showed that the proposed solutions had a slightly worse performance at the target transmission rate and a better performance at most of the intermediate rates, especially at the lowest ones.
机译:我们考虑不平等的错误保护策略,以便在嘈杂的频道上实现嵌入式图像代码的高效逐步传输。在渐进式传输中,重建质量不仅重要而且在目标传输速率上很重要,而且还处于中间速率。因此,充分的错误保护策略可以优化对中间速率集的平均性能。性能可以是正确解码的源位或预期失真的预期数量。对于基于速率的性能,我们证明了一些最佳解决方案的有趣属性,并提供了最佳的线性时间算法来计算它。对于基于失真的性能,我们提出了一种有效的线性时间本地搜索算法。对于二进制对称信道,两个最先进的源代码器(SPIHT和JPEG2000),我们比较了我们提出的解决方案对优化系统的端到端性能的策略的逐步能力。实验结果表明,所提出的解决方案在目标传输速率下具有略差更差的性能,并且在大多数中间速率下具有更好的性能,尤其是在最低的中间速率下。

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