Improved and fast algorithms for intra 4/spl times/4 mode decision in H.264/AVC

Chao-Hsuing Tseng, Hung-Ming Wang, J. Yang
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引用次数: 20

Abstract

In H.264 advanced video coding (AVC), intra prediction plays an important role in the compression of intraframes. H.264 provides two kinds of cost function, sum of absolute difference (SAD) or sum of absolute transform difference (SATD) plus 4P/spl lambda/ (Q/sub p/) by using the Hadamard transform, to decide the best intra mode. We first propose an improved cost function, which uses the sum of absolute integer transform difference (SAITD) and then develop two fast transform algorithms, each for the Hadamard transform used in SATD and the integer transform used in SAITD. These two fast transform algorithms are based on the property of linear transform and spatial relation in the predicted block. With the fast Hadamard transform algorithm, we can reduce the computation nearly by half compared to the original algorithm. With a small increase of computation, the SAITD achieves better coding performance in low bit rate than the SATD.
H.264/AVC中4/ sp1次/4模式决策的改进和快速算法
在H.264高级视频编码(AVC)中,帧内预测在帧内压缩中起着重要的作用。H.264提供了两种代价函数,即绝对差和(SAD)或绝对变换差和(SATD)加上4P/spl lambda/ (Q/sub p/),通过使用Hadamard变换来决定最佳的内模式。我们首先提出了一种改进的代价函数,该函数使用绝对整数变换差分和(SAITD),然后开发了两种快速变换算法,分别用于SATD中使用的Hadamard变换和SAITD中使用的整数变换。这两种快速变换算法都是基于预测块的线性变换性质和空间关系。采用快速的Hadamard变换算法,计算量比原算法减少了近一半。在计算量增加较少的情况下,SAITD在低比特率下的编码性能优于SATD。
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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