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High-Accuracy Estimation of Image Rotation Using 1D Phase-Only Correlation

机译:使用一维仅相位相关的图像旋转的高精度估计

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摘要

This paper presents a technique for high-accuracy estimation of image rotation using 1D Phase-Only Correlation (POC). The rotation angle between two images is estimated as follows: (ⅰ) compute the amplitude spectra of the given images, (ⅱ) transform the coordinate system of amplitude spectra from Cartesian coordinates to polar coordinates, and (ⅲ) estimate the translational displacement between the polar-mapped amplitude spectra to obtain the rotation angle. While the conventional approach is to employ 2D POC for high-accuracy displacement estimation in (ⅲ), this paper proposes the use of 1D POC with an adaptive line selection scheme. The proposed technique makes possible to improve the accuracy of rotation estimation for low contrast images of artificial objects with regular geometric shapes and to reduce the total computation cost by 50%.
机译:本文提出了一种使用一维仅相位相关(POC)进行图像旋转的高精度估计的技术。估计两个图像之间的旋转角度如下:(ⅰ)计算给定图像的振幅谱,(ⅱ)将振幅谱的坐标系从笛卡尔坐标转换为极坐标,并且(ⅲ)估计两个图像之间的平移位移极性映射的振幅谱以获得旋转角。虽然常规方法是在(1)中采用2D POC进行高精度位移估计,但本文提出了将1D POC与自适应线路选择方案一起使用。所提出的技术使得可以提高具有规则几何形状的人造物体的低对比度图像的旋转估计的准确性,并且可以将总计算成本降低50%。

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