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首页> 外文期刊>Journal of mathematical imaging and vision >Direct Differential Photometric Stereo Shape Recovery of Diffuse and Specular Surfaces
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Direct Differential Photometric Stereo Shape Recovery of Diffuse and Specular Surfaces

机译:直接差分光度立体声形状回收弥散和镜面

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摘要

Recovering the 3D shape of an object from shading is a challenging problem due to the complexity of modeling light propagation and surface reflections. Photometric Stereo (PS) is broadly considered a suitable approach for high-resolution shape recovery, but its functionality is restricted to a limited set of object surfaces and controlled lighting setup. In particular, PS models generally consider reflection from objects as purely diffuse, with specularities being regarded as a nuisance that breaks down shape reconstruction. This is a serious drawback for implementing PS approaches, since most common materials have prominent specular components. In this paper, we propose a PS model that solves the problem for both diffuse and specular components aimed at shape recovery of generic objects with the approach being independent of the albedo values thanks to the image ratio formulation used. Notably, we show that by including specularities, it is possible to solve the PS problem for a minimal number of three images using a setup with three calibrated lights and a standard industrial camera. Even if an initial separation of diffuse and specular components is still required for each input image, experimental results on synthetic and real objects demonstrate the feasibility of our approach for shape reconstruction of complex geometries.
机译:由于模拟光传播和表面反射的复杂性,从阴影中恢复对象的3D形状是一个具有挑战性的问题。光度立体声(PS)广泛地认为是高分辨率形状恢复的合适方法,但其功能仅限于有限的对象表面和受控照明设置。特别地,PS模型通常认为物体的反射为纯粹漫射,具有镜面被视为破坏形状重建的滋扰。这是实现PS方法的严重缺点,因为大多数常见材料具有突出的镜面组分。在本文中,我们提出了一种PS模型,其解决了针对衍射和镜面组分的漫射和镜面成分的问题,该方法具有与使用的图像比配方一起独立于反向值的方法。值得注意的是,我们表明,通过包括镜面,可以使用具有三个校准灯和标准工业相机的设置来解决最小三个图像的PS问题。即使每个输入图像仍然需要差分和镜面组分的初始分离,合成和实体对象的实验结果也表明了我们对复杂几何形状的形状重建方法的可行性。

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