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TOWARDS DEVELOPING A PRACTICAL SYSTEM TO RECOVER LIGHT, REFLECTANCE AND SHAPE

机译:致力于开发实用的系统以恢复光线,反射和形状

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Due to the complexity of the shape-from-shading problem, most solutions rely on idealistic conditions. Orthographic imaging, a known distant point light source, and known surface reflectance properties are usually assumed. Furthermore, most real surfaces are neither perfectly diffuse (Lambertian) nor ideally specular (mirror-like); however most shape-from-shading algorithms assume Lambertian reflectance. The behavior of shape-from-shading algorithms that rely on idealistic conditions is unpredictable in real imaging situations. In this paper, the LIRAS (Light, Reflectance, And Shape) Recovery System is proposed. LIRAS is a practical approach to the shape-from-shading problem, as many of these assumptions are relaxed. LIRAS is also a modular system: there is a component that recovers the surface reflectance properties, thus the assumption of Lambertian reflectance is relaxed. Rather than assume a known illuminant direction, a component exists that can recover the light orientation. Once the reflectance map is determined, another LIRAS module can use this information to recover the shape for non-Lambertian surfaces. Each of these modules is described and a discussion of how the components cooperate to recover three-dimensional shape information in real environments is given. Extensive experimental evaluation is conducted using both synthetic and real images and the results are very encouraging. The contributions of this paper include the design and implementation of LIRAS and the extensive quantative and qualitative experimental results, which can provide guidelines for future refinements of other shape recovery systems.
机译:由于阴影形状问题的复杂性,大多数解决方案都依赖于理想条件。通常假定正交成像,已知的远点光源和已知的表面反射率属性。此外,大多数真实表面既不是完美的漫反射(朗伯)也不是理想的镜面反射(类似镜面)。但是,大多数从阴影形状变形的算法都假设是朗伯反射率。在实际成像情况下,依赖于理想条件的阴影着色算法的行为是不可预测的。本文提出了一种LIRAS(光,反射率和形状)恢复系统。 LIRAS是解决阴影变形问题的一种实用方法,因为其中许多假设都是宽松的。 LIRAS也是一个模块化系统:有一个可恢复表面反射特性的组件,因此放宽了朗伯反射率的假设。不是假定已知的照明方向,而是存在可以恢复光定向的组件。确定反射率图后,另一个LIRAS模块可以使用此信息来恢复非朗伯曲面的形状。描述了这些模块中的每个模块,并给出了有关组件如何协作以在实际环境中恢复三维形状信息的讨论。使用合成图像和真实图像进行了广泛的实验评估,结果令人鼓舞。本文的贡献包括LIRAS的设计和实现,以及广泛的定量和定性实验结果,可为将来其他形状恢复系统的改进提供指导。

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