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Overlapped block motion compensation: an estimation-theoretic approach

机译:重叠块运动补偿:一种估计理论方法

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We present an estimation-theoretic analysis of motion compensation that, when used with fields of block-based motion vectors, leads to the development of overlapped block algorithms with improved compensation accuracy. Overlapped block motion compensation (OBMC) is formulated as a probabilistic linear estimator of pixel intensities given the limited block motion information available to the decoder. Although overlapped techniques have been observed to reduce blocking artifacts in video coding, this analysis establishes for the first time how (and why) OBMC can offer substantial reductions in prediction error as well, even with no change in the encoder's search and no extra side information. Performance can be further enhanced with the use of state variable conditioning in the compensation process. We describe the design of optimized windows for OBMC. We also demonstrate how, with additional encoder complexity, a motion estimation algorithm optimized for OBMC offers further significant gains in compensation accuracy. Overall mean-square prediction improvements in the range of 16 to 40% (0.8 to 2.2 dB) are demonstrated.
机译:我们提出了运动补偿的估计理论分析,当与基于块的运动矢量的字段一起使用时,将导致重叠块算法的发展,从而提高了补偿精度。给定解码器可用的有限块运动信息,将重叠块运动补偿(OBMC)公式化为像素强度的概率线性估计器。尽管已经观察到重叠的技术可以减少视频编码中的块状伪像,但该分析首次确定了OBMC如何(以及为什么)也可以大幅降低预测误差,即使编码器的搜索没有变化且没有额外的辅助信息也是如此。 。通过在补偿过程中使用状态变量调节,可以进一步提高性能。我们描述了OBMC的优化窗口的设计。我们还演示了在增加编码器复杂度的情况下,针对OBMC优化的运动估计算法如何在补偿精度上进一步提高收益。总体均方根预测改善了16%到40%(0.8到2.2 dB)。

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