Pallab Kanti Podder, M. Paul, Manzur Murshed, Subrata Chakraborty
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引用次数: 12
摘要
最近的高效视频编码(HEVC)标准使用不同的新工具,特别是更大和不对称的模式间可变尺寸运动估计和补偿,与其前身H.264/AVC相比,显示出更高的率失真(RD)性能。与H.264/AVC相比,这需要4倍以上的计算时间。因此,如何在保持标准视频质量的同时减少时间一直是研究人员关注的一个大问题。在HEVC中通过智能选择合适的模式来减少计算时间是我们的动机。为了完成本文的任务,我们通过比较许多不同的二进制模式模板,使用相位相关来近似当前和参考块之间的运动信息,然后选择运动估计模式的子集,而不是穷尽地探索所有可能的模式。实验结果表明,所提出的HEVC- pc (HEVC with Phase Correlation)方案在保持视频序列相同质量的前提下,在计算时间上优于标准HEVC方案。更具体地说,与HEVC中的穷举模式选择相比,大约减少了40%的编码时间。
Fast Intermode Selection for HEVC Video Coding Using Phase Correlation
The recent High Efficiency Video Coding (HEVC) Standard demonstrates higher rate-distortion (RD) performance compared to its predecessor H.264/AVC using different new tools especially larger and asymmetric inter-mode variable size motion estimation and compensation. This requires more than 4 times computational time compared to H.264/AVC. As a result it has always been a big concern for the researchers to reduce the amount of time while maintaining the standard quality of the video. The reduction of computational time by smart selection of the appropriate modes in HEVC is our motivation. To accomplish this task in this paper, we use phase correlation to approximate the motion information between current and reference blocks by comparing with a number of different binary pattern templates and then select a subset of motion estimation modes without exhaustively exploring all possible modes. The experimental results exhibit that the proposed HEVC-PC (HEVC with Phase Correlation) scheme outperforms the standard HEVC scheme in terms of computational time while preserving-the same quality of the video sequences. More specifically, around 40% encoding time is reduced compared to the exhaustive mode selection in HEVC.