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An Interframe Prediction Technique Combining Template Matching Prediction and Block-Motion Compensation for High-Efficiency Video Coding

机译:结合模板匹配预测和块运动补偿的高效视频编码帧间预测技术

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This paper introduces an interframe prediction technique that combines two motion vectors (MVs) derived respectively from template and block matching for overlapped block motion compensation (OBMC). It has a salient feature of not having to signal the template MV, while achieving a prediction performance close to that of bi-prediction. We begin by studying template matching prediction (TMP) from a theoretical perspective. Based on two signal models, the template MV is shown to approximate the pixel true motion around the template centroid, through which we explain why TMP generally outperforms SKIP prediction but is inferior to block-based motion compensation in terms of prediction performance. We then approach the problem of finding another MV to best complement the template MV from both deterministic and statistical viewpoints, the latter leading to the search of its optimal sampling location in the motion field. The result is a search criterion with OBMC window functions forming a geometry-like motion partitioning when the template area is straddled on the top and to the left of a target block. Generalizations to adaptive template design, multihypothesis prediction and motion merging are made to explore the complexity and performance trade-offs. Extensive experiments based on the HM-6.0 software show that the best of them, in terms of compression performance, achieves 1.7–2.0% BD-rate reductions at a cost of 26% and 39% increases in encoding and decoding times, respectively.
机译:本文介绍了一种帧间预测技术,该技术结合了分别从模板和块匹配中得出的两个运动矢量(MV),以实现重叠块运动补偿(OBMC)。它的显着特征是不必发信号通知模板MV,同时实现了接近双向预测的预测性能。我们从理论角度研究模板匹配预测(TMP)。基于两个信号模型,显示了模板MV可以近似估计围绕模板质心的像素真实运动,通过它我们可以解释为什么TMP通常优于SKIP预测,但在预测性能方面不如基于块的运动补偿。然后,我们从确定性和统计的角度出发,寻找另一种MV来最好地补充模板MV的问题,后者导致在运动场中寻找其最佳采样位置。结果是,当模板区域跨在目标块的顶部和左侧时,具有OBMC窗口函数的搜索条件形成了类似几何的运动分区。对自适应模板设计,多假设预测和运动合并进行了概括,以探索复杂性和性能之间的权衡。基于HM-6.0软件的大量实验表明,其中最好的压缩性能是BD速率降低了1.7-2.0%,编码和解码时间分别增加了26%和39%。

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