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Spatial-Aided Low-Delay Wyner-Ziv Video Coding

机译:空间辅助低延迟Wyner-Ziv视频编码

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摘要

In distributed video coding, the side information (SI) quality plays an important role in Wyner-Ziv (WZ) frame coding. Usually, SI is generated at the decoder by the motion-compensated interpolation (MCI) from the past and future key frames under the assumption that the motion trajectory between the adjacent frames is translational with constant velocity. However, this assumption is not always true and thus, the coding efficiency for WZ coding is often unsatisfactory in video with high and/or irregular motion. This situation becomes more serious in low-delay applications since only motion-compensated extrapolation (MCE) can be applied to yield SI. In this paper, a spatial-aided Wyner-Ziv video coding (WZVC) in low-delay application is proposed. In SA-WZVC, at the encoder, each WZ frame is coded as performed in the existing common Wyner-Ziv video coding scheme and meanwhile, the auxiliary information is also coded with the low-complexity DPCM. At the decoder, for the WZ frame decoding, auxiliary information should be decoded firstly and then SI is generated with the help of this auxiliary information by the spatial-aided motion-compensated extrapolation (SA-MCE). Theoretical analysis proved that when a good tradeoff between the auxiliary information coding and WZ frame coding is achieved, SA-WZVC is able to achieve better rate distortion performance than the conventional MCE-based WZVC without auxiliary information. Experimental results also demonstrate that SA-WZVC can efficiently improve the coding performance of WZVC in low-delay application.
机译:在分布式视频编码中,辅助信息(SI)的质量在Wyner-Ziv(WZ)帧编码中起着重要作用。通常,在假定相邻帧之间的运动轨迹以恒定速度平移的假设下,通过过去和将来的关键帧的运动补偿插值(MCI)在解码器上生成SI。但是,这种假设并不总是正确的,因此,在具有高运动和/或不规则运动的视频中,用于WZ编码的编码效率通常不令人满意。由于只有运动补偿外推(MCE)可以用于产生SI,因此这种情况在低延迟应用中会变得更加严重。本文提出了一种低延迟应用中的空间辅助Wyner-Ziv视频编码(WZVC)。在SA-WZVC中,在编码器中,每个WZ帧都按照现有的常见Wyner-Ziv视频编码方案进行编码,同时,辅助信息也使用低复杂度DPCM进行编码。在解码器处,对于WZ帧解码,应先对辅助信息进行解码,然后借助空间辅助运动补偿外推(SA-MCE)在此辅助信息的帮助下生成SI。理论分析证明,当在辅助信息编码和WZ帧编码之间取得良好的折衷时,与没有辅助信息的传统基于MCE的WZVC相比,SA-WZVC能够实现更好的速率失真性能。实验结果还表明,SA-WZVC可以在低延迟应用中有效提高WZVC的编码性能。

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  • 来源
    《EURASIP journal on image and video processing》 |2009年第2009期|P.2.1-2.11|共11页
  • 作者单位

    Digital Media Research Center, Institute of Computing Technology, Chinese Academy of Science, Beijing 100190, China;

    rnDepartment of Automation, Tsinghua University, Beijing 100084, China;

    rnDepartment of Computer Science, Harbin Institute of Technology, Harbin 150001, China;

    rnDigital Media Research Center, Institute of Computing Technology, Chinese Academy of Science, Beijing 100190, China Institute of Digital Media, School of Electronic Engineering and Computer Science, Peking University, Beijing 100871, China;

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