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首页> 外文期刊>International Journal of Computer Vision >Multi-view scene capture by surfel sampling: From video streams to non-rigid 3D motion, shape and reflectance
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Multi-view scene capture by surfel sampling: From video streams to non-rigid 3D motion, shape and reflectance

机译:通过surfel采样捕获多视图场景:从视频流到非刚性3D运动,形状和反射率

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摘要

In this paper we study the problem of recovering the 3D shape, reflectance, and non-rigid motion properties of a dynamic 3D scene. Because these properties are completely unknown and because the scene's shape and motion may be non-smooth, our approach uses multiple views to build a piecewise-continuous geometric and radiometric representation of the scene's trace in space-time. A basic primitive of this representation is the dynamic surfel, which (1) encodes the instantaneous local shape, reflectance, and motion of a small and bounded region in the scene, and (2) enables accurate prediction of the region's dynamic appearance under known illumination conditions. We show that complete surfel-based reconstructions can be created by repeatedly applying an algorithm called Surfel Sampling that combines sampling and parameter estimation to fit a single surfel to a small, bounded region of space-time. Experimental results with the Phong reflectance model and complex real scenes (clothing, shiny objects, skin) illustrate our method's ability to explain pixels and pixel variations in terms of their underlying causes-shape, reflectance, motion, illumination, and visibility. [References: 99]
机译:在本文中,我们研究了恢复动态3D场景的3D形状,反射率和非刚性运动属性的问题。由于这些属性是完全未知的,并且场景的形状和运动可能不平滑,因此我们的方法使用多个视图来构建时空中场景轨迹的分段连续几何和辐射度表示。这种表示的基本原语是动态冲浪,其(1)编码场景中小而有界区域的瞬时局部形状,反射率和运动,并且(2)能够在已知光照下准确预测该区域的动态外观条件。我们展示了可以通过重复应用一种名为Surfel Sampling的算法来创建完整的基于surfel的重构,该算法结合了采样和参数估计,以将单个surfel拟合到一个小的时空边界区域。 Phong反射率模型和复杂的真实场景(衣服,发亮的物体,皮肤)的实验结果说明了我们的方法能够根据像素的根本原因(形状,反射率,运动,照明和可见性)来解释像素和像素变化。 [参考:99]

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