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Visual-weighted motion compensation frame interpolation with motion vector refinement

机译:运动矢量细化的视觉加权运动补偿帧插值

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摘要

In this paper, we propose a novel frame rate up-conversion algorithm based on joint motion vector refinement and visual-weighted motion compensation interpolation (MCI). It utilizes a hierarchical motion vector refinement to correct inaccurate motion vectors (MVs), which is composed of the global level and the local level. In the global level, distinct inaccurate MVs are detected by global controlling and then corrected by neighborhood information. Afterwards, the local level performs the local controlling to pick out local outliers and re-estimate them with the maximum likelihood method. Finally, plausible weights for each block in the interpolated frame, computed by the similarity index(SSIM), are applied for visual compensation. The experimental results demonstrate that compared with the conventional algorithm EBME, the proposed algorithm achieved the average PSNR by up to 2.7dB while the visual quality improvement is also remarkable.
机译:在本文中,我们提出了一种基于联合运动矢量细化和视觉加权运动补偿插值(MCI)的新颖帧速率上转换算法。它利用分层运动矢量细化来校正不准确的运动矢量(MV),该运动矢量由全局级别和局部级别组成。在全局级别上,通过全局控制检测到明显不准确的MV,然后通过邻域信息进行校正。此后,局部级别执行局部控制以挑选局部离群值,并使用最大似然法对其进行重新估计。最后,将由相似度索引(SSIM)计算的插值帧中每个块的合理权重应用于视觉补偿。实验结果表明,与传统算法EBME相比,该算法可实现2.7dB的平均PSNR,视觉质量也有明显提高。

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