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Lens distortion calibration by explicit straight-line to distorted-line geometric mapping

机译:镜头失真校准通过显式直线扭转到扭曲线几何映射

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Medium and wide-angle off-shelf cameras are often used in computer-vision applications despite their large lens distortion. Algorithms to correct for radial and tangential distortion are available; however, they often use non-linear optimization search methods that rely on carefully chosen starting points. This paper presents a method to correct for both radial symmetric lens distortion and decentering lens distortion using an iterative geometric approach to find the distortion center, and a closed-form solution for all other distortion parameters. The method is based on deriving an equivalent radial symmetric distortion model that accounts for both radial and tangential distortion. The technique uses the simple geometric relationship between a straight line and its distorted counterpart under this distortion model. The distortion calibration involves firstly determining the axis of symmetry of several distorted lines. The intersection of these axes is then computed and considered as the point of best radial symmetry (PBRS). The inclinations of the axes of symmetry of the distorted lines are then used in a closed-form solution to determine the distortion coefficients. One advantage of this approach is that higher-order coefficients can be included as needed, with their computation still achieved in closed form. The simplicity of the lens distortion calibration technique has been demonstrated in a simulation using synthetic images.
机译:尽管它们镜头失真大,但仍然在计算机视觉应用中使用中型和广角的搁板摄像机。可获得校正径向和切向失真的算法;但是,它们通常使用依赖于仔细选择的起点的非线性优化搜索方法。本文介绍了一种方法来校正径向对称透镜失真和使用迭代几何方法来找到失真中心的透镜失真,以及所有其他失真参数的闭合解决方案。该方法基于导出用于径向和切向失真的等效径向对称失真模型。该技术在该失真模型下使用直线与其失真的对应物之间的简单几何关系。失真校准涉及首先确定几条扭曲线的对称轴。然后计算这些轴的交叉点,被认为是最佳径向对称性的点(PBR)。然后以闭合溶液使用扭曲线对称轴的倾斜以确定失真系数。这种方法的一个优点是根据需要可以包括高阶系数,其计算仍然以封闭形式实现。使用合成图像的模拟中已经演示了镜头失真校准技术的简单性。

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