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GEOMETRICALLY DISTORTED IMAGE CORRECTION FOR SINGLE LENS USING DECIMAL NUMBER MAPPING

机译:使用十进制数映射的单一镜头的几何扭曲图像校正

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In the research field of image processing, many famous and classical algorithms aiming to correct geometrically distorted image have been documented. We also proposed a mathematically simple algorithm previously which is based on Seidel Aberration equation, but it suffered from pixel discontinuity because of its integer number mapping nature. The pixel discontinuity can be eliminated by carrying out an additional pixel interpolation step, which will greatly confine the processing speed. In this paper, we introduce an improved decimal number mapping (DNM) algorithm that needs no interpolation at all. Quantitative evaluation of the DNM method proved that DNM is superior in both smoothness of the corrected image and computational speed compared with our previously proposed algorithms.
机译:在图像处理的研究领域中,已经记录了许多旨在纠正几何扭曲图像的着名和古典算法。我们还提出了一种以前基于Seidel像差方程的数学简单的算法,但由于其整数映射性质,它遭受像素不连续性。通过执行附加像素内插步骤,可以消除像素不连续性,这将大大限制处理速度。在本文中,我们引入了一种改进的十进制数映射(DNM)算法,其根本不需要插值。与我们先前提出的算法相比,DNM方法的定量评估证明,DNM在校正图像和计算速度的平滑度方面优异。

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