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Correction of geometric lens distortion through image warping

机译:通过图像变形校正几何透镜畸变

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摘要

This paper presents a new technique for estimating and correcting the geometric distortion produced by common off-the-shelf lenses. The task of recovering the three most important parameters modeling the lens distortion of a digital camera is formulated as a problem of image warping where the distorted image of a planar calibration plate taken by the camera has to be registered onto the virtual undistorted image of the same target that would be produced by an ideal pinhole digital camera in a convenient position with respect to it. The Levenberg-Marquardt algorithm is chosen for solving the associated minimization problem in which the cost function is the squared /spl Lscr//sub 2/ norm of the difference between the intensities of the reference and distorted image. In this paper, the algorithm is applied to a practical case of lens distortion correction, the experimental results reported here confirm the effectiveness of the image warping approach.
机译:本文提出了一种新的技术,用于估计和校正常见的现成透镜产生的几何畸变。恢复模拟数码相机镜头畸变的三个最重要参数的任务被表述为图像变形的问题,其中相机拍摄的平面校准板的变形图像必须配准到该相机的虚拟未变形图像上理想的针孔数码相机在相对于其方便的位置所产生的目标。选择Levenberg-Marquardt算法来解决相关的最小化问题,其中成本函数是参考图像和失真图像的强度之差的平方/ spl Lscr // sub 2 /范数。本文将该算法应用于镜头畸变校正的实际情况,此处报道的实验结果证实了图像变形方法的有效性。

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