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Advanced techniques for video codec optimization.

机译:视频编解码器优化的先进技术。

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摘要

Video coding and delivery over networks have experienced dramatic growth recently and attracted increasing research interests. In order to provide high-quality video delivery services, many technical issues must be taken into consideration including: how to achieve better coding efficiency to improve delivered video quality over limited bandwidth; how to reduce the computational complexity of current video coding standards for low-power wireless devices; how to efficiently adapt the pre-stored video bitstreams to formats more suitable for networks, etc. In this dissertation, we investigate various new techniques on standard-conforming video codec optimizations.; Global Motion Compensation is an important but computationally expensive coding tool in MPEG-4. We propose a new iterative approach for Global Motion Estimation (GME) from coarsely sampled motion vector fields. The proposed iterative method minimizes the fitting error between a set of input Motion Vectors (MV) and the MVs generated from the estimated motion model, using the Newton-Raphson method with outlier rejections. We investigate the application of the proposed methods to fast GME for MPEG-4 Advanced Simple Profile (ASP) encoding, MPEG-2 to MPEG-4 ASP transcoding, and MV-based error concealments. We also propose a non-iterative GME algorithm, which first fits multiple global motion models from groups of input MVs, then a robust estimate is formed by a histogram-based post-processing.; Multiple Reference Frame Motion Compensation (MRF-MC) is an important new feature in the state-of-the-art H.264 video coding standard. We propose a fast Multiple Reference Frame Motion Estimation (MRF-ME) algorithm that takes into account the correlation/continuity of motion vectors among different reference frames, which effectively reduces the computations of MRP-ME, and achieves similar coding gain compared to the approach in H.264 reference implementation.; New video coding standards enable a very large set of coding modes in order to adapt to local signal characteristics, and thus achieve higher coding efficiency. However, the encoder complexity for the mode decision module is greatly increased, especially when Rate-Distortion Optimization (RDO) is used. We propose several new algorithms to optimize the mode decision in the H.264 Extension encoder using a transform-domain approach. Simulation results show significant encoder complexity reduction with virtually no coding performance loss.
机译:网络上的视频编码和交付最近经历了飞速发展,并吸引了越来越多的研究兴趣。为了提供高质量的视频交付服务,必须考虑许多技术问题,包括:如何获得更好的编码效率,以在有限的带宽上提高交付的视频质量;如何降低当前低功耗无线设备视频编码标准的计算复杂度;如何有效地使预先存储的视频比特流适应更适合网络等的格式。全局运动补偿是MPEG-4中重要但运算量很大的编码工具。我们提出了一种新的迭代方法,用于从粗糙采样的运动矢量场进行全局运动估计(GME)。所提出的迭代方法使用具有异常值剔除的牛顿-拉夫森方法,将一组输入运动矢量(MV)与从估计的运动模型生成的MV之间的拟合误差降至最低。我们调查了提议的方法在MPEG-4高级简单配置文件(ASP)编码,MPEG-2到MPEG-4 ASP转码以及基于MV的错误隐藏的快速GME中的应用。我们还提出了一种非迭代GME算法,该算法首先适合来自输入MV组的多个全局运动模型,然后通过基于直方图的后处理形成鲁棒的估计。多参考帧运动补偿(MRF-MC)是最新的H.264视频编码标准中的一项重要新功能。考虑到不同参考帧之间运动矢量的相关性/连续性,我们提出了一种快速的多参考帧运动估计(MRF-ME)算法,与该方法相比,该算法有效地减少了MRP-ME的计算量,并获得了相似的编码增益在H.264参考实现中。新的视频编码标准启用了非常多的编码模式集,以适应本地信号特性,从而实现更高的编码效率。但是,模式决策模块的编码器复杂性大大增加,尤其是在使用速率失真优化(RDO)时。我们提出了几种新的算法,以使用变换域方法优化H.264扩展编码器中的模式决策。仿真结果表明,编码器复杂度显着降低,几乎没有编码性能损失。

著录项

  • 作者

    Su, Yeping.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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