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A Unified Shape-From-Shading Approach for 3D Surface Reconstruction Using Fast Eikonal Solvers

机译:使用快速尖锐求解器进行三维表面重建的统一形状 - 从阴影方法

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Object shape reconstruction from images has been an active topic in computer vision. Shape-from-shading (SFS) is an important approach for inferring 3D surface from a single shading image. In this paper, we present a unified SFS approach for surfaces of various reflectance properties using fast eikonal solvers. The whole approach consists of three main components: a unified SFS model, a unified eikonal-type partial differential image irradiance (PDII) equation, and fast eikonal solvers for the PDII equation. The first component is designed to address different reflectance properties including diffuse, specular, and hybrid reflections in the imaging process of the camera. The second component is meant to derive the PDII equation under an orthographic camera projection and a single distant point light source whose direction is the same as the camera. Finally, the last component is targeted at solving the resultant PDII equation by using fast eikonal solvers. It comprises two Godunov-based schemes with fast sweeping method that can handle the eikonal-type PDII equation. Experiments on several synthetic and real images demonstrate that each type of the surfaces can be effectively reconstructed with more accurate results and less CPU running time.
机译:来自图像的对象形状重建是计算机视觉中的活动主题。形状从阴影(SFS)是从单个着色图像推断3D表面的重要方法。在本文中,我们使用快速尖锐溶剂介绍了各种反射性能的表面的统一SFS方法。整个方法由三个主要组成部分组成:统一的SFS模型,统一的eikonal型部分差分图像辐照度(PDII)等式,以及PDII方程的快速Eikonal求解器。第一组件旨在解决在相机的成像过程中的漫射,镜面和混合反射的不同反射率特性。第二组分旨在导出正交摄像机投影下的PDII等式,并且其方向与相机相同的单个远端光源。最后,最后一个组件通过使用快速尖食溶剂来求解所得PDII方程。它包括两个基于Godunov的方案,具有快速扫描方法,可以处理eikonal型PDII方程。关于若干合成和实图像的实验表明,可以通过更准确的结果和较少的CPU运行时间来有效地重建各种类型的表面。

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