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Real-Time Affine Global Motion Estimation Using Phase Correlation and its Application for Digital Image Stabilization

机译:基于相位相关的实时仿射全局运动估计及其在数字图像稳定中的应用

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We propose a fast and robust 2D-affine global motion estimation algorithm based on phase-correlation in the Fourier-Mellin domain and robust least square model fitting of sparse motion vector field and its application for digital image stabilization. Rotation-scale-translation (RST) approximation of affine parameters is obtained at the coarsest level of the image pyramid, thus ensuring convergence for a much larger range of motions. Despite working at the coarsest resolution level, using subpixel-accurate phase correlation provides sufficiently accurate coarse estimates for the subsequent refinement stage of the algorithm. The refinement stage consists of RANSAC based robust least-square model fitting for sparse motion vector field, estimated using block-based subpixel-accurate phase correlation at randomly selected high activity regions in finest level of image pyramid. Resulting algorithm is very robust to outliers such as foreground objects and flat regions. We investigate the robustness of the proposed method for digital image stabilization application. Experimental results show that the proposed algorithm is capable of estimating larger range of motions as compared to another phase correlation method and optical flow algorithm.
机译:我们提出了一种基于傅立叶-梅林域中的相位相关和稀疏运动矢量场的鲁棒最小二乘模型拟合的快速鲁棒的二维仿射全局运动估计算法及其在数字图像稳定中的应用。仿射参数的旋转比例平移(RST)近似值是在图像金字塔的最粗糙级别获得的,因此可确保在更大范围的运动中收敛。尽管工作在最粗糙的分辨率级别,但使用子像素精确的相位相关性可为算法的后续优化阶段提供足够准确的粗糙估计。细化阶段包括针对稀疏运动矢量场的基于RANSAC的鲁棒最小二乘模型拟合,该估计在图像金字塔的最高级中使用随机选择的高活动区域中基于块的亚像素准确相位相关性进行估算。所得算法对于异常值(例如前景对象和平坦区域)非常健壮。我们研究了所提出的方法在数字图像稳定应用中的鲁棒性。实验结果表明,与另一种相位相关方法和光流算法相比,该算法能够估计更大范围的运动。

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