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Standards conforming video coding optimization.

机译:符合视频编码优化标准。

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摘要

Digital video coding and transmission have become increasingly important due to the increasing popularity of multimedia applications. H.264/AVC is the state-of-the-art video coding standard which improves video coding efficiency significantly, with a cost of high computational complexity.; Standards allow researchers to develop optimization algorithms to optimize the video encoders for complexity reduction and for video quality improvement. Complexity reduction is important for low power, real-time applications such as wireless video. Video quality improvement is important for high quality applications such as video broadcasting, HD-DVD etc.; For complexity reduction, Motion Estimation (ME) and Mode Decision (MD) consume the largest portion of the computation power in the H.264 encoding. This dissertation investigates three fast ME strategies by MV merging and splitting for Variable-Size Block Motion Estimation (VSBME), to explores the correlation of MVs of overlapping blocks. In addition, an Inter-mode decision method is proposed by Fast Mode Exclusion (FME) and Dominant Mode Prediction (DMP). Experimental results show that the proposed fast ME algorithms reduce the search points to about 4% of those by the fast full-search, and that the proposed FME and DMP reduce the computation by an additional 25%, with negligible Rate-Distortion (R-D) degradation.; For video quality improvement, rate-control is a critical functional block. In this dissertation, a novel two-pass rate-control algorithm is proposed to achieve more consistent video quality. The Distortion-Quantization Parameter (D-Q) property is collected in the first pass. In the second pass, the appropriate D-Q curve is adaptively selected for different Macroblock (MB) types to predict the current MB's D-Q characteristic and determine its quantization parameter. The proposed method achieves better and more consistent video quality, without significant extra computation.; Due to the wide availability of MPEG-2 content and the better coding efficiency of the H.264/AVC, it is desired to transcode MPEG-2 to H.264/AVC for universal multimedia access. We propose a motion-vector reuse and coding-mode reuse process for MPEG-2 to H.264 main profile transcoding. Simulation results show that the proposed approach significantly reduces the computational complexity of the transcoder without sacrificing the rate-distortion performance.
机译:由于多媒体应用的日益普及,数字视频编码和传输已变得越来越重要。 H.264 / AVC是最新的视频编码标准,它以很高的计算复杂度为代价,显着提高了视频编码效率。通过标准,研究人员可以开发优化算法来优化视频编码器,从而降低复杂性并提高视频质量。降低复杂度对于诸如无线视频之类的低功耗实时应用很重要。视频质量的提高对于高质量应用(例如视频广播,HD-DVD等)很重要;为了降低复杂度,运动估计(ME)和模式决策(MD)消耗了H.264编码中最大的计算能力。本文研究了通过MV合并和分裂的三种快速ME策略进行可变尺寸块运动估计(VSBME),以探索重叠块MV的相关性。另外,通过快速模式排除(FME)和主导模式预测(DMP)提出了一种模式间决策方法。实验结果表明,所提出的快速ME算法通过快速全搜索将搜索点减少到搜索点的4%左右,并且所提出的FME和DMP将计算量减少了25%,且速率失真(RD)可以忽略不计降解。;为了提高视频质量,速率控制是至关重要的功能块。本文提出了一种新颖的两遍速率控制算法,以实现更加一致的视频质量。失真量化参数(D-Q)属性是在第一遍中收集的。在第二遍中,针对不同的宏块(MB)类型自适应选择适当的D-Q曲线,以预测当前MB的D-Q特性并确定其量化参数。所提出的方法实现了更好和更一致的视频质量,而无需大量额外的计算。由于MPEG-2内容的广泛可用性以及H.264 / AVC的更好编码效率,因此希望将MPEG-2转码为H.264 / AVC,以实现通用多媒体访问。我们提出了从MPEG-2到H.264主配置文件的代码转换的运动矢量重用和编码模式重用过程。仿真结果表明,该方法在不牺牲码率失真性能的前提下,显着降低了转码器的计算复杂度。

著录项

  • 作者

    Zhou, Zhi.;

  • 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 100 p.
  • 总页数 100
  • 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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