Low-Complexity Heterogeneous Video Transcoding by Motion Vector Clustering

YoonJeong Shin, NamRye Son, Nguyen Dinh Toan, Gueesang Lee
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引用次数: 7

Abstract

The recently developed video compression standard, H.264/AVC surpasses the performance of previous video standards, such as MPEG-2, MPEG-4(part2), and H.263 and is therefore expected to be selected as the video standard for most digital video applications. The widely distributed infrastructure, however, continues to use the previous standards. Heterogeneous video transcoding offers a significant key to the resolution of this problem. This paper suggests a new algorithm for H.264/AVC to MPEG-2 transcoding that uses motion vector clustering to reduce the computation time with no loss of quality. Such a clustering method can reduce the number of candidate motion vectors that are gathered during the H.264 decoding stage. These candidate motion vectors consider the correlation between the direction and distance of the motion vectors in the variable blocks in H.264/AVC. The candidate motion vector that has the least distortion is then selected in the MPEG-2 encoder. The MPEG-2 encoder can therefore use the best motion vector without carrying out computations for motion estimation. The experimental results show that the proposed method can maintain a good level of video quality while reducing the computational complexity by a considerable 64%, on average, compared to a cascade transcoder.
基于运动向量聚类的低复杂度异构视频转码
最近开发的视频压缩标准H.264/AVC的性能超过了以前的视频标准,如MPEG-2、MPEG-4(part2)和H.263,因此有望被选为大多数数字视频应用的视频标准。然而,广泛分布的基础设施继续使用以前的标准。异构视频转码是解决这一问题的关键。本文提出了一种新的H.264/AVC到MPEG-2的转码算法,该算法利用运动向量聚类来减少计算时间,同时不影响转码质量。这种聚类方法可以减少H.264解码阶段收集的候选运动向量的数量。这些候选运动向量考虑了H.264/AVC中可变块中运动向量的方向和距离之间的相关性。然后在MPEG-2编码器中选择具有最小失真的候选运动矢量。因此,MPEG-2编码器可以使用最佳的运动矢量,而无需进行运动估计的计算。实验结果表明,与级联转码器相比,该方法在保持良好的视频质量的同时,平均将计算复杂度降低了64%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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