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首页> 外文期刊>Signal Processing. Image Communication: A Publication of the the European Association for Signal Processing >Variable block-based deblocking filter for H.264/AVC on low-end and low-bit rates terminals
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Variable block-based deblocking filter for H.264/AVC on low-end and low-bit rates terminals

机译:低端和低比特率终端上用于H.264 / AVC的基于块的可变解块滤波器

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摘要

H.264/AVC supports variable block motion compensation, multiple reference frames, 1/4-pixel motion vector accuracy, and in-loop deblocking filter, compared with previous video coding standards. While these coding techniques are major functions for video compression improvement, they lead to high computational complexity at the same time. For the H.264 video coding techniques to be actually applied on low-end/low-bit rates terminals more extensively, it is essential to improve the coding efficiency. Currently the H.264 deblocking filter, which can improve the subjective quality of video, is hardly used on low-end terminals due to computational complexity. In this paper, we propose an enhanced method of deblocking filter that efficiently reduces the blocking artifacts occurring during the low-bit rates video coding. In the 'variable block-based deblocking filter (VBDF)' proposed in this paper, the temporal and spatial characteristics of moving pictures are extracted using the variable block-size information of motion compensation, the filter mode is classified into four different modes according to the moving-picture characteristics, and the adaptive filtering is executed in the separate modes. The proposed VBDF can reduce the blocking artifacts, prevent excessive blurring effects, and achieve about 30-40% computational speedup at about the same PSNR compared with the existing methods.
机译:与以前的视频编码标准相比,H.264 / AVC支持可变块运动补偿,多个参考帧,1/4像素运动矢量精度和环路解块滤波器。尽管这些编码技术是改善视频压缩的主要功能,但它们同时导致很高的计算复杂度。为了更广泛地将H.264视频编码技术实际应用于低端/低比特率终端,必须提高编码效率。当前,由于计算复杂性,几乎可以在低端终端上使用可以提高视频的主观质量的H.264解块滤波器。在本文中,我们提出了一种增强的解块滤波器方法,该方法可有效减少在低比特率视频编码过程中出现的块效应。在本文提出的“基于可变块的解块滤波器(VBDF)”中,使用运动补偿的可变块大小信息提取运动图像的时空特征,将滤波器模式分为以下四种不同的模式:动画特性,并且自适应滤波在单独的模式下执行。与现有方法相比,提出的VBDF可以减少阻塞伪像,防止过度的模糊效应,并在大约相同的PSNR时实现大约30-40%的计算速度。

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