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Unified optical distortion correction method for imaging systems using a concise geometrical transformation model

机译:使用简明几何变换模型进行统一光学失真校正方法

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Since optical distortion has been a big trouble for various kinds of imaging systems, finding a simple correction method with wide applications is of significant importance. In this paper, we propose a unified and simple correction method, performing well for both photographic and projective imaging systems. The basic idea is regarding the optical distortion as geometrical deformation between the object and image, without considering the specific features of an optical system. First of all, a calibration template is employed to establish the geometrical transformation model (GTM) for the distortion of a built optical system. Two alternative algorithms are given to estimate the GTM in algebraic form. The computation is very simple because no intrinsic parameters of the optical system are needed to establish the GTM. Besides, the errors introduced by the fabricating and assembling process can be eliminated. Then, the corrected image of the photographic system or the pre-distorted image of the projective systems can be obtained accordingly utilizing the GTM. Experiments are conducted to demonstrate the effectiveness of our method with wide applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于光学失真对于各种成像系统来说是一个很大的麻烦,因此找到具有广泛应用的简单校正方法具有重要意义。在本文中,我们提出了一种统一和简单的校正方法,对照相和投影成像系统表现良好。基本思想是关于物体和图像之间的几何变形的光学失真,而不考虑光学系统的特定特征。首先,采用校准模板来建立用于构建光学系统的失真的几何变换模型(GTM)。给出了两种替代算法以估计代数形式的GTM。计算非常简单,因为不需要光学系统的内在参数来建立GTM。此外,可以消除由制造和组装过程引入的误差。然后,可以利用GTM获得照相系统的校正图像或投影系统的预失真图像。进行实验以证明我们具有广泛应用方法的有效性。 (c)2016 Elsevier B.v.保留所有权利。

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