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Extended Analysis of Motion-Compensated Frame Difference for Block-Based Motion Prediction Error

机译:基于块的运动预测误差的运动补偿帧差的扩展分析

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In the past, most design and optimization work on hybrid video codecs relied mainly on experimental evidence. A proper theoretical model is always desirable, since this allows us to explain the phenomena of existing codecs and to design better ones. In this paper, we make use of the first-order Markov model to derive an approximated separable autocorrelation model for the block-based motion compensation frame difference (MCFD) signal. A major assumption of our derivation is that the net deformation of pixels is directional, in general, rather than a uniform error distribution in a block. We have also shown that the imperfect block-based motion compensation is significant to the theoretical study and the behavior of motion-compensated codecs. Results of our experimental work show that the derived model can describe the statistical characteristics of the MCFD signals accurately. The model also shows that the imperfectly formulated block-based motion compensation can result in an incorrect MCFD autocorrelation function while, conversely, it can form a better block-based motion compensation scheme.
机译:过去,大多数混合视频编解码器的设计和优化工作主要依靠实验证据。始终需要一个合适的理论模型,因为这可以让我们解释现有编解码器的现象并设计更好的编解码器。在本文中,我们利用一阶马尔可夫模型为基于块的运动补偿帧差(MCFD)信号导出了近似的可分离自相关模型。我们推导的主要假设是,像素的净变形通常是方向性的,而不是块中均匀的误差分布。我们还表明,不完善的基于块的运动补偿对理论研究和运动补偿编解码器的行为具有重要意义。我们的实验工作结果表明,导出的模型可以准确地描述MCFD信号的统计特征。该模型还表明,不完全公式化的基于块的运动补偿会导致错误的MCFD自相关函数,而相反,它会形成更好的基于块的运动补偿方案。

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