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Orthogonal Illuminations in Two Light-Source Photometric Stereo

机译:两个光源光度学立体中的正交照明

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In this paper we investigate the case of ambiguous shape reconstruction from two light-source photometric stereo based on illuminating the unknown Lambertian surface. So-far this problem is merely well-understood for two linearly independent light-source directions with one illumination assumed as overhead. As already established, a necessary and sufficient condition to disambiguate the entire shape reconstruction process is controlled by the satisfaction of the corresponding second-order linear PDE with constant coefficients in two independent variables. This work extends the latter to an arbitrary pair of light-source directions transforming the above constraint into a special nonlinear PDE. In addition, a similar ambiguity analysis is also performed for a special configuration of two light-source directions assumed this time as orthogonal and contained in the vertical plane. Finally, this work is supplemented by illustrative examples exploiting symbolic computation used within a framework of continuous reflectance map model (i.e. an image irradiance equation) and applied to a genuine Lambertian surfaces.
机译:在本文中,我们基于照亮未知Lambertian表面的情况,研究了从两个光源光度学立体图像重建模棱两可的情况。到目前为止,对于两个线性独立的光源方向,其中一个照明被假定为开销,这个问题仅仅是很好理解的。如已经建立的,通过使两个独立变量具有恒定系数的相应二阶线性PDE的满足,来控制消除整个形状重构过程的歧义的必要和充分条件。这项工作将后者扩展到任意一对光源方向,从而将上述约束转换为特殊的非线性PDE。另外,对于这次假设为正交并包含在垂直平面中的两个光源方向的特殊配置,也进行了类似的歧义分析。最后,这项工作得到了示例性实例的补充,这些实例利用了在连续反射图模型(即图像辐照度方程)的框架内使用的符号计算,并应用于真实的朗伯表面。

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