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Geometric Calibration of Micro-Lens-Based Light Field Cameras Using Line Features

机译:基于线特征的基于微透镜的光场相机的几何校准

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摘要

We present a novel method for the geometric calibration of micro-lens-based light field cameras. Accurate geometric calibration is the basis of various applications. Instead of using sub-aperture images, we directly utilize raw images for calibration. We select appropriate regions in raw images and extract line features from micro-lens images in those regions. For the entire process, we formulate a new projection model of a micro-lens-based light field camera, which contains a smaller number of parameters than previous models. The model is transformed into a linear form using line features. We compute the initial solution of both the intrinsic and the extrinsic parameters by a linear computation and refine them via non-linear optimization. Experimental results demonstrate the accuracy of the correspondences between rays and pixels in raw images, as estimated by the proposed method.
机译:我们提出了一种基于微透镜的光场相机的几何校准的新方法。精确的几何校准是各种应用的基础。代替使用子孔径图像,我们直接利用原始图像进行校准。我们在原始图像中选择适当的区域,并从这些区域的微透镜图像中提取线特征。对于整个过程,我们制定了一个基于微透镜的光场相机的新投影模型,该模型包含的参数数量比以前的模型要少。使用线要素将模型转换为线性形式。我们通过线性计算来计算内在和外在参数的初始解,然后通过非线性优化对其进行优化。实验结果证明了该方法估计的原始图像中光线与像素之间对应关系的准确性。

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