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Analytical Modeling of Vanishing Points and Curves in Catadioptric Cameras

机译:分析模拟消失点和曲线在途径相机

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Vanishing points and vanishing lines are classical geometrical concepts in perspective cameras that have a lineage dating back to 3 centuries. A vanishing point is a point on the image plane where parallel lines in 3D space appear to converge, whereas a vanishing line passes through 2 or more vanishing points. While such concepts are simple and intuitive in perspective cameras, their counterparts in catadioptric cameras (obtained using mirrors and lenses) are more involved. For example, lines in the 3D space map to higher degree curves in catadioptric cameras. The projection of a set of 3D parallel lines converges on a single point in perspective images, whereas they converge to more than one point in catadioptric cameras. To the best of our knowledge, we are not aware of any systematic development of analytical models for vanishing points and vanishing curves in different types of catadioptric cameras. In this paper, we derive parametric equations for vanishing points and vanishing curves using the calibration parameters, mirror shape coefficients, and direction vectors of parallel lines in 3D space. We show compelling experimental results on vanishing point estimation and absolute pose estimation for a wide range of catadioptric cameras in both simulations and real experiments.
机译:消失点和消失线是在透视相机中的古典几何概念,这些概念具有追溯到3世纪的谱系。消失点是图像平面上的点,其中3D空间中的平行线似乎会聚,而消失线通过2或更多的消失点。虽然这种概念在透视摄像机中简单且直观,但其在昏暗的摄像机(使用镜子和镜片获得)中的对应物更涉及。例如,3D空间中的线路映射到较高程度的曲线中的CATADIOPTRIC摄像机。一组3D平行线的投影在透视图像中的单个点上会聚,而它们会聚到多个递送电像摄像机中的多个点。据我们所知,我们不了解在不同类型的分析模型的分析模型中的任何系统开发,不同类型的分析模型。在本文中,我们使用3D空间中的平行线的校准参数,镜像系数和方向向量推出参数化方程。在模拟和实际实验中,我们对消失点估计和绝对姿态估计进行了令人信服的实验结果。

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