基于H.264的块基自适应插值滤波器的三维运动矢量编码

H. Kimata, Masaki Kitahara, Y. Yashima
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引用次数: 3

摘要

分数像素运动补偿由于在分数像素位置生成图像时具有更精确的运动精度和较低的路径滤波效果,通常可以提高编码效率。在H.264中,应用了四分之一像素运动补偿,其中半像素位置的图像由6个抽头维纳滤波器生成。提出了自适应插值滤波技术,可自适应地改变半像素位置的滤波特性。该技术还可以在四分之一像素位置改变图像,因此可以利用它来扩展运动精度,使其更加精确。提出了一种基于块基自适应插值滤波(BAIF)的三维运动矢量编码技术。本文还证明了所提出的方法能够确保滤波器数据成功地集成到运动矢量编码中,并且优于普通的H.264。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D motion vector coding with block base adaptive interpolation filter on H.264
Fractional pel motion compensation generally improves coding efficiency due to more precise motion accuracy and low path filtering effect in generating an image at fractional pel positions. In H.264, quarter pel motion compensation is applied, where the image at half pel position is generated by a 6 tap Wiener filter. And the adaptive interpolation filter technique, which adaptively changes filter characteristics for half pel positions has been proposed. That technique also changes the image at quarter pel positions, so it can be exploited to extend motion accuracy to be more precise. In this paper, a 3D motion vector coding (3DMVC) technique with block base adaptive interpolation filter (BAIF) is proposed. This paper also demonstrates the proposed method ensures filter data is successfully integrated into motion vector coding and outperforms the normal H.264.
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