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A novel spatial and temporal correlation integrated based motion-compensated interpolation for frame rate up-conversion

机译:一种基于时空相关积分的新型运动补偿插值帧率上变换

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摘要

In this paper, a novel motion-compensated interpolation (MCI) method for frame rate up-conversion based on spatial and temporal correlation integrated is presented. Comparing to conventional MCI method, there are four main advantages of the proposed algorithm. First, the motion vectors (MVs) embedded in the bit-stream are examined and corrected by the coding-type information, the spatial correlation in the MV field and the temporal correlation in the pixel field together. Second, constant motion velocity model based MV estimation for the blocks in the interpolated frame is used to gain the initial value with consideration of the correlation of the related MV. Third, further refinement on the estimated MVs is performed based on the spatial correlation in the interpolated frame and temporal correlation in the before and after frames together. Fourth, adaptive weighted bi-directional interpolation is applied to obtain final recovered pixels using the refined MVs. Experimental results show that the proposed algorithm achieves a significant increase on PSNR and also a great improvement of visual performance over the conventional method.
机译:本文提出了一种新的基于时空相关积分的运动补偿插值(MCI)帧速率上转换方法。与传统的MCI方法相比,该算法具有四个主要优点。首先,通过编码类型信息,MV场中的空间相关性和像素场中的时间相关性一起检查和校正嵌入在比特流中的运动矢量(MV)。其次,考虑到相关MV的相关性,使用用于插值帧中的块的基于恒定运动速度模型的MV估计来获得初始值。第三,基于内插帧中的空间相关性以及前后帧中的时间相关性,对估计的MV进行进一步的细化。第四,应用自适应加权双向插值,以使用改进的MV获得最终恢复的像素。实验结果表明,与传统方法相比,该算法在PSNR上有显着提高,并且在视觉性能上有很大提高。

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