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Transcoding of H264 bitstream to MPEG-2 bitstream.

机译:H264比特流到MPEG-2比特流的代码转换。

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摘要

H.264/AVC was recently developed by the JVT (Joint Video Team). This new standard fulfills significant coding efficiency, simple syntax specifications and seamless integration of video coding into all current protocols and multiplex architectures. The H.264 specification represents a significant advancement in the field of video coding technology by providing MPEG-2 comparable video quality at an average of half the required bandwidth. Since widespread use of H.264 is anticipated, many legacy systems including all Digital TVs and home receivers use MPEG-2. This leads to the need for an efficient architecture that significantly employs the lower cost of H.264 video and does not require a significant investment in additional video coding hardware [14]. An H.264 to MPEG-2 transcoder with low computational complexity and comparable quality to an MPEG-2 only encoded decoded sequence is one such effort in the above direction.; Algorithm: The proposed research divides the process of transcoding into two parts. The first part deals with the transcoding of I frames where the best method is complete encoding and decoding of the input H.264 bit stream and then re-encoding it in the MPEG-2 format. This is the best method is terms of complexity and quality too due to the advance features of H.264 which is not supported in MPEG-2, like H.264 performs intra prediction in the pixel domain and then applies a 4x4 integer transform across the residual. However in the case of MPEG-2, intra prediction is done in the transform domain and it basically involves the process of dividing every macroblock into 8x8 blocks and apply a 2D-DCT across them to get the transform coefficients. In the case of P frame transcoding, motion vectors are extracted from the H.264 decoding stage and then they are scaled and summed depending on the H.264 block sizes to get an MPEG-2 compatible motion vector for the entire 16x16 macroblock. The obtained motion vectors are then refined over a 2 pixel search window to get the best match and then reused in the MPEG-2 encoding stage. This method produces comparable quality transcoded output to simple MPEG-2 encoded decoded output with a significant saving in the motion estimation time at the MPEG-2 encoding stage.
机译:H.264 / AVC最近由JVT(联合视频小组)开发。该新标准可实现显着的编码效率,简单的语法规范以及将视频编码无缝集成到所有当前协议和多路复用架构中。 H.264规范通过以平均所需带宽的一半提供MPEG-2可比的视频质量,代表了视频编码技术领域的重大进步。由于预计会广泛使用H.264,因此许多传统系统(包括所有数字电视和家庭接收器)都使用MPEG-2。这导致需要一种有效的体系结构,该体系结构需要使用H.264视频的较低成本,并且不需要在其他视频编码硬件上进行大量投资[14]。在上述方向上,这种努力之一就是具有低计算复杂度和与仅MPEG-2编码的解码序列相当的质量的H.264到MPEG-2转码器。算法:所提出的研究将代码转换过程分为两部分。第一部分处理I帧的转码,最好的方法是对输入的H.264比特流进行完整的编码和解码,然后以MPEG-2格式对其进行重新编码。由于MPEG-2不支持H.264的高级功能,因此从复杂性和质量方面来说,这也是最好的方法,例如H.264在像素域中执行帧内预测,​​然后在整个像素范围内应用4x4整数变换剩余的。但是,在MPEG-2的情况下,帧内预测是在变换域中完成的,它基本上涉及将每个宏块划分为8x8块并对其应用2D-DCT以获得变换系数的过程。在P帧转码的情况下,从H.264解码阶段提取运动矢量,然后根据H.264块大小对其进行缩放和求和,以获得整个16x16宏块的MPEG-2兼容运动矢量。然后,将获得的运动矢量在2个像素的搜索窗口中进行细化,以获得最佳匹配,然后在MPEG-2编码阶段重新使用。此方法可产生与简单MPEG-2编码的解码输出相当的质量转码输出,并大大节省了MPEG-2编码阶段的运动估计时间。

著录项

  • 作者

    Sharma, Sreejana.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.E.E.
  • 年度 2007
  • 页码 105 p.
  • 总页数 105
  • 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

  • 入库时间 2022-08-17 11:40:10

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