Calibrating a Non-isotropic Near Point Light Source Using a Plane

Jaesik Park, Sudipta N. Sinha, Y. Matsushita, Yu-Wing Tai, In-So Kweon
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引用次数: 31

Abstract

We show that a non-isotropic near point light source rigidly attached to a camera can be calibrated using multiple images of a weakly textured planar scene. We prove that if the radiant intensity distribution (RID) of a light source is radially symmetric with respect to its dominant direction, then the shading observed on a Lambertian scene plane is bilaterally symmetric with respect to a 2D line on the plane. The symmetry axis detected in an image provides a linear constraint for estimating the dominant light axis. The light position and RID parameters can then be estimated using a linear method. Specular highlights if available can also be used for light position estimation. We also extend our method to handle non-Lambertian reflectances which we model using a biquadratic BRDF. We have evaluated our method on synthetic data quantitavely. Our experiments on real scenes show that our method works well in practice and enables light calibration without the need of a specialized hardware.
用平面标定非各向同性近点光源
我们展示了一个非各向同性的近点光源,刚性地附着在相机上,可以使用弱纹理平面场景的多个图像进行校准。我们证明了如果光源的辐射强度分布(RID)相对于其主导方向是径向对称的,那么在朗伯场景平面上观察到的阴影相对于平面上的二维直线是双边对称的。在图像中检测到的对称轴为估计主光轴提供了线性约束。然后可以使用线性方法估计光源位置和RID参数。如果可用,镜面高光也可以用于光位置估计。我们还扩展了我们的方法来处理我们使用双二次BRDF建模的非朗伯反射率。我们用合成数据定量地评价了我们的方法。我们在真实场景中的实验表明,我们的方法在实践中效果良好,无需专门的硬件就可以实现光校准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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