Successive refinement of side information using adaptive search area for long duration GOPs in distributed video coding

Abdalbassir Abou-Elailah, F. Dufaux, Marco Cagnazzo, B. Pesquet-Popescu, J. Farah
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引用次数: 5

Abstract

In distributed video coding, the reference frames are used to generate a side information at the decoder in order to decode the Wyner-Ziv frame. The quality of side information has a strong impact on the coding efficiency of distributed video coding. The estimation of the side information becomes less accurate when the temporal distance between the neighboring reference frames increases or when the sequence contains fast motion. In this paper, we propose a new method based on successive refinement of the side information by adapting the motion search area after decoding the first DCT band. More specifically, different search areas are initially set, according to the temporal distance between the neighboring reference frames. Furthermore, the size of the search area is adapted to the motion content after decoding the first DCT band by using the partially decoded Wyner-Ziv frame. This adapted search area is used in order to refine the side information after decoding each remaining DCT band. The experimental results show that the proposed technique allows an improvement in rate distortion performance that can reach 0.7 dB for a GOP size of 8, compared to the method where a constant search area is used, and a significant gain up to 3.23 dB, with respect to DISCOVER codec. The improvement in the quality of the final side information reaches 5.6 dB for some frames, compared to constant search area. Moreover, the proposed method reduces significantly the decoding time for all test sequences.
利用自适应搜索区域对分布式视频编码中长时间GOPs的边信息进行逐次细化
在分布式视频编码中,参考帧用于在解码器处生成侧信息以解码Wyner-Ziv帧。侧信息的质量对分布式视频编码的编码效率有很大的影响。当相邻参考帧之间的时间距离增加或序列包含快速运动时,侧信息的估计会变得不准确。在本文中,我们提出了一种新的方法,即在DCT第一波段解码后,通过调整运动搜索区域来逐次细化边缘信息。更具体地说,根据相邻参考帧之间的时间距离,初始设置不同的搜索区域。此外,使用部分解码的Wyner-Ziv帧解码第一DCT波段后,使搜索区域的大小适应于运动内容。在解码每个剩余的DCT波段后,使用这个适应的搜索区域来细化侧信息。实验结果表明,与使用恒定搜索区域的方法相比,该技术可以在GOP大小为8的情况下提高率失真性能,达到0.7 dB,并且相对于DISCOVER编解码器,该技术的增益可达3.23 dB。与恒定搜索区域相比,某些帧的最终侧信息质量提高了5.6 dB。此外,该方法显著减少了所有测试序列的解码时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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