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Improved standard-conforming video transcoding techniques.

机译:改进的符合标准的视频转码技术。

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摘要

Many video coding standards have been established for various video applications, such as H.263 for low-bit-rate two-way video communications, MPEG-2 for broadcasting and general high-quality video applications, and MPEG-4 for streaming video and interactive multimedia applications. As digital video applications become more popular, increasing amounts of video content are encoded in different formats. Consequently there are increasing needs to dynamically convert the video between different formats. A video transcoder is a device that converts video from a compressed format into another compressed format. It is one of the enabling technologies for video delivery over heterogeneous networks. The goal of transcoding research is to achieve the best possible quality-complexity tradeoff given application constraints. The key to achieve this goal is to intelligently utilize the coding statistics of the input compressed video stream to facilitate the transcoding process.; In this dissertation, we propose several techniques to improve transcoding performance. First, we present an efficient motion re-estimation scheme that can handle not only the temporal/spatial resolution conversion, but also the interlaced video processing. Exploiting the spatial and temporal correlations between the input motion vectors, we derive the motion vectors for the transcoded output video from appropriate input motion vectors. Compared with the straightforward, cascaded decoder-encoder implementation using full-search motion estimation, the proposed algorithm achieves virtually the same quality with greatly reduced computational requirement. We then present an adaptive picture-layer bit-allocation algorithm based on estimated output picture complexities. It achieves better bit-allocations to different types of pictures, and handles scene-changes better than conventional approaches. It the end, we propose an operational rate-distortion optimized macroblock-layer rate-control algorithm based on the Lagrange Multiplier (LM) algorithm. The LM algorithm is a quasi-optimal solution to this rate-control problem, but is computationally too expensive for practical applications. Taking advantage of the properties of the low-bit-rate video and the LM algorithm, we propose an approach to reduce its computational complexity. The proposed algorithm outperforms H.263 TMN8 in terms of video quality and buffer behavior with slightly increased computational requirement.
机译:已经针对各种视频应用建立了许多视频编码标准,例如用于低比特率双向视频通信的H.263,用于广播和一般高质量视频应用的MPEG-2,以及用于流视频和视频的MPEG-4。交互式多媒体应用程序。随着数字视频应用变得越来越流行,越来越多的视频内容以不同的格式进行编码。因此,越来越需要在不同格式之间动态转换视频。视频代码转换器是一种将视频从压缩格式转换为另一种压缩格式的设备。它是通过异构网络进行视频传输的使能技术之一。研究转码的目的是在给定应用限制的情况下,实现最佳的质量-复杂度折衷。实现该目标的关键是智能地利用输入的压缩视频流的编码统计信息,以促进代码转换过程。本文提出了几种提高转码性能的技术。首先,我们提出了一种有效的运动重估计方案,该方案不仅可以处理时间/空间分辨率转换,还可以处理隔行视频处理。利用输入运动向量之间的空间和时间相关性,我们从适当的输入运动向量中导出转码输出视频的运动向量。与使用全搜索运动估计的直接,级联的解码器-编码器实现相比,该算法在减少计算需求的情况下实现了几乎相同的质量。然后,我们提出了一种基于估计的输出图片复杂度的自适应图片层比特分配算法。与传统方法相比,它可以为不同类型的图片实现更好的位分配,并更好地处理场景更改。最后,我们提出了一种基于拉格朗日乘数(LM)算法的可优化操作速率失真的宏块层速率控制算法。 LM算法是对此速率控制问题的准最佳解决方案,但对于实际应用而言,在计算上过于昂贵。利用低比特率视频和LM算法的特性,我们提出了一种降低其计算复杂度的方法。所提出的算法在视频质量和缓存行为方面优于H.263 TMN8,但计算要求却有所提高。

著录项

  • 作者

    Xin, Jun.;

  • 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 2002
  • 页码 101 p.
  • 总页数 101
  • 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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