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A Fast Algorithm for Subpixel Accuracy Image Stabilization for digital Film and Video

机译:用于数字电影和视频的子像素精度图像稳定快速算法

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This paper introduces a novel method for subpixel accuracy stabilization of unsteady digital films and video sequences. The proposed method offers a near-closed-form solution to the estimation of the global subpixel displacement between two frames, that causes the misregistration of them. The criterion function used is the mean-squared error over the displaced frames, in which image intensities at subpixel locations are evaluated using bilinear interpolation. The proposed algorithm is both faster and more accurate than the search-based solutions found in the literature. Experimental results demonstrate the superiority of the proposed method to the spatio-temporal differentiation and surface fitting algorithms, as well. Furthermore, the proposed algorithm is designed so that it is insensitive to frame-to-frame intensity variations. It is also possible to estimate any affine motion between two frames by applying the proposed algorithm on three non-collinear points in the unsteady frame.
机译:本文介绍了一种新的非稳态数字胶片和视频序列亚像素精度稳定的新方法。该方法提供了近闭合形式的解决方案,估计了两个框架之间的全局子像素位移,这导致它们的误解。所使用的标准函数是位移帧上的平均平方误差,其中使用BILINEAR插值评估子像素位置处的图像强度。所提出的算法比在文献中发现的搜索解决方案更快,更准确。实验结果表明了所提出的方法对时空分化和表面拟合算法的优越性。此外,所提出的算法被设计成使得它对帧到框架强度变化不敏感。还可以通过在不稳定帧中的三个非共线点上应用所提出的算法来估计两个帧之间的任何仿射运动。

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