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Side-Information-Dependent Correlation Channel Estimation in Hash-Based Distributed Video Coding

机译:基于哈希的分布式视频编码中依赖于边信息的相关信道估计

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In the context of low-cost video encoding, distributed video coding (DVC) has recently emerged as a potential candidate for uplink-oriented applications. This paper builds on a concept of correlation channel (CC) modeling, which expresses the correlation noise as being statistically dependent on the side information (SI). Compared with classical side-information-independent (SII) noise modeling adopted in current DVC solutions, it is theoretically proven that side-information-dependent (SID) modeling improves the Wyner–Ziv coding performance. Anchored in this finding, this paper proposes a novel algorithm for online estimation of the SID CC parameters based on already decoded information. The proposed algorithm enables bit-plane-by-bit-plane successive refinement of the channel estimation leading to progressively improved accuracy. Additionally, the proposed algorithm is included in a novel DVC architecture that employs a competitive hash-based motion estimation technique to generate high-quality SI at the decoder. Experimental results corroborate our theoretical gains and validate the accuracy of the channel estimation algorithm. The performance assessment of the proposed architecture shows remarkable and consistent coding gains over a germane group of state-of-the-art distributed and standard video codecs, even under strenuous conditions, i.e., large groups of pictures and highly irregular motion content.
机译:在低成本视频编码的背景下,分布式视频编码(DVC)最近已成为面向上行链路应用的潜在候选者。本文基于相关通道(CC)建模的概念,该概念将相关噪声表示为统计上依赖于边信息(SI)。与当前DVC解决方案中采用的经典的独立于边信息的(SII)噪声模型相比,从理论上证明依赖边信息(SID)的模型可以改善Wyner-Ziv编码性能。基于这一发现,本文提出了一种基于已解码信息的在线估算SID CC参数的新算法。所提出的算法实现了信道估计的逐位平面逐次细化,从而逐渐提高了精度。另外,提出的算法包含在采用竞争性基于散列的运动估计技术以在解码器处生成高质量SI的新颖DVC体系结构中。实验结果证实了我们的理论收益,并验证了信道估计算法的准确性。所提出的体系结构的性能评估显示,即使在艰苦的条件下,即在大量图片和高度不规则的运动内容的情况下,在一组最新的分布式和标准视频编解码器上,也获得了惊人且一致的编码增益。

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