Accurate Photometric Stereo Using Four Surface Normal Approximations

O. Ikeda
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Abstract

Previously we presented a shape reconstruction method from photometric stereo, which applies the Jacobi iterative method to reflectance map equations for M images and linearly combines the resulting iterative relations, to directly estimate the depth map of the object. For the case of two images, however; the method gives rise to noticeable distortions for certain lighting directions. In this paper, four approximations of the surface normal are introduced and the resulting 4M iterative relations are linearly combined as constraints, to effectively realize a symmetric discretization and achieve robust estimation free from such distortions. The method is investigated numerically using both synthetic and real images.
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使用四个表面法线近似的精确光度立体
在此之前,我们提出了一种基于光度立体的形状重建方法,该方法将Jacobi迭代法应用于M图像的反射率图方程,并将得到的迭代关系线性组合,直接估计物体的深度图。然而,对于两个图像的情况;这种方法对某些照明方向产生明显的扭曲。本文引入了曲面法线的四种近似,并将所得到的4M迭代关系作为约束线性组合,有效地实现了对称离散化,实现了不存在这种畸变的鲁棒估计。利用合成图像和真实图像对该方法进行了数值研究。
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