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Fast half-pixel motion estimation based on directional search and a linear model

机译:基于方向搜索和线性模型的快速半像素运动估计

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As many fast integer-pixel motion estimation algorithms have become available, an integer-pixel motion vector can be found by examining less than 10 search points. Meanwhile, 8 half-pixel positions around the integer-pixel motion vector are to be examined for half-pixel motion estimation. Hence, it becomes more meaningful to reduce the computational complexity of half-pixel motion estimation. In this paper, we propose a fast half-pixel motion estimation algorithm, by combining a directional search and linear modeling of SAD curve. The proposed algorithm reduces the number of search points to 2.21 in average, while the image quality of reconstructed sequences in terms of PSNR is similar to existing fast half-pixel motion estimation algorithms. In addition, by adjusting a user-defined parameter, the proposed algorithm can significantly reduce the number of search points to 0.34 on average with a slight PSNR degradation.
机译:随着许多快速的整数像素运动估计算法变得可用,可以通过检查少于10个搜索点来找到整数像素运动矢量。同时,将检查整数像素运动矢量周围的8个半像素位置,以进行半像素运动估计。因此,降低半像素运动估计的计算复杂度变得更加有意义。在本文中,我们结合了方向搜索和SAD曲线的线性建模,提出了一种快速的半像素运动估计算法。提出的算法平均将搜索点的数量减少到2.21,而重构序列的图像质量在PSNR方面类似于现有的快速半像素运动估计算法。另外,通过调整用户定义的参数,所提出的算法可以将搜索点的数量平均减少到平均0.34个,同时PSNR会略有下降。

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