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首页> 外文期刊>IEICE transactions on information and systems >Prefiltering and Postfiltering Based on Global Motion Compensation for Improving Coding Efficiency in H.264 and HEVC Codecs
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Prefiltering and Postfiltering Based on Global Motion Compensation for Improving Coding Efficiency in H.264 and HEVC Codecs

机译:基于全局运动补偿的预滤波和后滤波,以提高H.264和HEVC编解码器的编码效率

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In this paper, we propose a filtering approach based on global motion estimation (GME) and global motion compensation (GMC) for pre- and postprocessing of video codecs. For preprocessing a video codec, group of pictures (GOP), which is a basic unit for GMC, and reference frames are first defined for an input video sequence. Next, GME and GMC are sequentially performed for every frame in each GOP. Finally, a block-based adaptive temporal filter is applied between the GMC frames before video encoding. For postprocessing a video codec at the decoder end, every decoded frame is inversely motion-compensated using the transmitted global motion information. The holes generated during inverse motion compensation can be filled with the reference frames. The experimental results show that the proposed algorithm provides higher Bjontegaard-delta peak signal-to-noise ratios (BD-PSNRs) of 0.63 and 0.57 dB on an average compared with conventional H.264 and HEVC platforms, respectively.
机译:在本文中,我们提出了一种基于全局运动估计(GME)和全局运动补偿(GMC)的视频编解码器预处理和后处理方法。为了对视频编解码器进行预处理,图像组(GOP)是GMC的基本单位,并且首先为输入视频序列定义参考帧。接下来,针对每个GOP中的每个帧依次执行GME和GMC。最后,在视频编码之前,在GMC帧之间应用基于块的自适应时间滤波器。为了在解码器端对视频编解码器进行后处理,使用传输的全局运动信息对每个解码帧进行逆运动补偿。反向运动补偿过程中产生的孔可以用参考框架填充。实验结果表明,与传统的H.264和HEVC平台相比,该算法提供的平均Bjontegaard-delta峰值信噪比(BD-PSNRs)平均分别为0.63和0.57 dB。

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