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Video temporal super-resolution using nonlocal registration and self-similarity

机译:使用非本地配准和自相似性的视频时间超分辨率

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In this paper we present a novel temporal super-resolution method for increasing the frame-rate of single videos. The proposed algorithm is based on motion-compensated 3-D patches, i.e., a sequence of 2-D blocks following a given motion trajectory. The trajectories are computed through a coarse-to-fine motion estimation strategy embedding a regularized block-wise distance metric that takes into account the coherence of neighbouring motion vectors. Our algorithm comprises two stages. In the first stage, a nonlocal search procedure is used to find a set of 3-D patches (targets) similar to a given patch (reference), subsequently all targets are registered at sub-pixel precision with respect to the reference in an upsampled 3-D FFT domain, and finally all registered patches are aggregated at their appropriate locations in the high-resolution video. The second stage is used to further improve the estimation quality by correcting each 3-D patch of the video obtained from the first stage with a linear operator learned from the self-similarity of patches at a lower temporal scale. Our experimental evaluation on color videos shows that the proposed approach achieves high quality super-resolution results from both an objective and subjective point of view.
机译:在本文中,我们提出了一种新颖的时间超分辨率方法,用于提高单个视频的帧速率。所提出的算法基于运动补偿的3D斑块,即遵循给定运动轨迹的2D块序列。通过嵌入考虑了相邻运动矢量的相干性的规则化逐块距离度量的,从粗到精的运动估计策略来计算轨迹。我们的算法包括两个阶段。在第一阶段,使用非本地搜索过程来查找一组类似于给定色块(参考)的3D色块(目标),随后将所有目标以相对于参考的亚像素精度注册到上采样中3-D FFT域,最后所有已注册的色块都聚集在高分辨率视频中的相应位置。第二阶段用于通过使用线性运算符校正从第一阶段获得的视频的每个3-D补丁来进一步提高估计质量,该线性算子是从较低时标的补丁的自相似性中学到的。我们对彩色视频的实验评估表明,从客观和主观的角度来看,该方法都可以实现高质量的超分辨率结果。

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