Decoder-Friendly Subpel MV Selection for H.264/AVC Video Encoding

Qi Zhang, Yunyang Dai, Siwei Ma, C.-C. Jay Kuo
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引用次数: 5

Abstract

A decoder-friendly subpel motion vector (MV) selection scheme for H.264/AVC video encoding is proposed in this work. First, the rate-distortion (RD) relationship with respect to subpel MVs is examined to shed light on the tradeoff of R-D performance degradation and complexity reduction in different block types. It is observed that the R-D gain of some macroblocks (MB) is greatly enhanced by employing subpel MVs while others are not. An SAD-based approach is adopted to decide whether the subpel MV scheme is needed for a certain MB. To enhance the prediction accuracy, the correlation of MVs in the spatial domain is also exploited. Our scheme further introduces decoder complexity budget to aid the designer in making design tradeoffs. Experimental results indicate that our scheme is flexible enough that the actual achieved complexity is very close to the target complexity budget under different QP settings.
H.264/AVC视频编码的解码器友好Subpel MV选择
针对H.264/AVC视频编码,提出了一种解码器友好的子像素运动矢量(MV)选择方案。首先,研究了与子块mv相关的率失真(RD)关系,以阐明在不同块类型中R-D性能下降和复杂性降低的权衡。我们观察到,一些宏块(MB)的R-D增益通过亚细胞mv得到了极大的增强,而另一些则没有。为了提高预测精度,采用了一种基于sar的方法来确定对某一MB是否需要采用subpel MV格式,并利用了MV在空间域中的相关性。我们的方案进一步引入了解码器复杂度预算,以帮助设计人员进行设计权衡。实验结果表明,该方案具有足够的灵活性,在不同的QP设置下,实际实现的复杂度非常接近目标复杂度预算。
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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