H.264/AVC中基于帧递归分块的多参考帧失真估计模型及运动拷贝隐藏

Werayut Saesue, Jian Zhang, C. Chou
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引用次数: 2

摘要

本文针对H.264/AVC视频编解码器,提出了一种精确的信道失真估计模型。该模型扩展了我们之前提出的基于块的混合帧递归失真模型,同时考虑了多个参考帧和运动复制隐藏技术,这些技术在最新的视频压缩推荐标准H.264/AVC中首次引入。为了捕捉多个参考帧的特征,我们引入了一个新的参数来将当前帧与多个参考帧的依赖关系联系起来,并基于先前计算的失真结果采用线性组合方法形成统计模型。利用伯努利过程对解码像素的一阶矩进行近似,得到帧复制和运动复制隐藏的估计公式。仿真结果与我们提出的信道误差失真估计结果进行了比较,结果表明我们的模型具有较高的估计精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frame-recursive block-based distortion estimation model for multiple reference frames and motion copy concealment in H.264/AVC
In this paper, we present an accurate channel distortion estimation model for robust H.264/AVC video codec. The model extends our previously proposed hybrid frame-recursive block-based distortion model by taking into account both multiple reference frames and motion copy concealment techniques which are first introduced in the latest video compression recommendation H.264/AVC. In order to capture the characteristics of multiple reference frames, we introduce a new parameter to relate the dependency of the current frame to more-than-one reference frames and applying a linear combination method to form a statistical model based on previously calculated distortion results. By applying Bernoulli process to approximate the first moment of decoded pixel, we can obtain an estimation formula for both frame copy and motion copy concealments. The simulation results are compared with our proposed channel-error distortion estimation results and the comparisons show that our model yields a fairly high estimation accuracy.
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