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Robust Hough Transform Based 3D Reconstruction from Circular Light Fields

机译:基于鲁棒霍夫变换的圆形光场3D重建

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Light-field imaging is based on images taken on a regular grid. Thus, high-quality 3D reconstructions are obtainable by analyzing orientations in epipolar plane images (EPIs). Unfortunately, such data only allows to evaluate one side of the object. Moreover, a constant intensity along each orientation is mandatory for most of the approaches. This paper presents a novel method which allows to reconstruct depth information from data acquired with a circular camera motion, termed circular light fields. With this approach it is possible to determine the full 360° view of target objects. Additionally, circular light fields allow retrieving depth from datasets acquired with telecentric lenses, which is not possible with linear light fields. The proposed method finds trajectories of 3D points in the EPIs by means of a modified Hough transform. For this purpose, binary EPI-edge images are used, which not only allow to obtain reliable depth information, but also overcome the limitation of constant intensity along trajectories. Experimental results on synthetic and real datasets demonstrate the quality of the proposed algorithm.
机译:光场成像基于在规则网格上拍摄的图像。因此,通过分析对极平面图像(EPI)中的方向可以获得高质量的3D重建。不幸的是,此类数据仅允许评估对象的一侧。此外,对于大多数方法,必须沿每个方向保持恒定的强度。本文提出了一种新颖的方法,该方法可以从通过圆形摄像机运动获取的数据(称为圆形光场)中重建深度信息。使用这种方法可以确定目标对象的完整360°视图。此外,圆形光场允许从远心镜头获取的数据集中检索深度,而线性光场则不可能。所提出的方法通过改进的霍夫变换在EPI中找到3D点的轨迹。为此,使用二进制EPI边缘图像,该图像不仅允许获得可靠的深度信息,而且克服了沿轨迹恒定强度的限制。综合和真实数据集的实验结果证明了该算法的质量。

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