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Camera calibration and light source orientation from solar shadows

机译:摄像机校准和来自太阳阴影的光源方向

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摘要

In this paper, we describe a method for recovering camera parameters from perspective views of daylight shadows in a scene, given only minimal geometric information determined from the images. This minimal information consists of two 3D stationary points and their cast shadows on the ground plane. We show that this information captured in two views is sufficient to determine the focal length, the aspect ratio, and the principal point of a pinhole camera with fixed intrinsic parameters. In addition, we are also able to compute the orientation of the light source. Our method is based on exploiting novel inter-image constraints on the image of the absolute conic and the physical properties of solar shadows. Compared to the traditional methods that require images of some precisely machined calibration patterns, our method uses cast shadows by the sun, which are common in natural environments, and requires no measurements of any distance or angle in the 3D world. To demonstrate the accuracy of the proposed algorithm and its utility, we present the results on both synthetic and real images, and apply the method to an image-based rendering problem.
机译:在本文中,我们描述了一种从场景中的日光阴影透视图恢复相机参数的方法,仅给出从图像确定的最小几何信息。这些最少的信息包括两个3D固定点及其在地平面上的投射阴影。我们显示,在两个视图中捕获的信息足以确定具有固定固有参数的针孔相机的焦距,纵横比和主点。此外,我们还能够计算光源的方向。我们的方法基于对绝对圆锥和太阳阴影的物理属性的图像进行新颖的图像间约束。与需要某些经过精确加工的校准图案的图像的传统方法相比,我们的方法使用太阳投射的阴影,这在自然环境中很常见,并且不需要在3D世界中测量任何距离或角度。为了证明所提出算法的准确性及其实用性,我们在合成图像和真实图像上都给出了结果,并将该方法应用于基于图像的渲染问题。

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