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偏振多视角逆向渲染。

Polarimetric Multi-View Inverse Rendering.

出版信息

IEEE Trans Pattern Anal Mach Intell. 2023 Jul;45(7):8798-8812. doi: 10.1109/TPAMI.2022.3232211. Epub 2023 Jun 5.

Abstract

A polarization camera has great potential for 3D reconstruction since the angle of polarization (AoP) and the degree of polarization (DoP) of reflected light are related to an object's surface normal. In this paper, we propose a novel 3D reconstruction method called Polarimetric Multi-View Inverse Rendering (Polarimetric MVIR) that effectively exploits geometric, photometric, and polarimetric cues extracted from input multi-view color-polarization images. We first estimate camera poses and an initial 3D model by geometric reconstruction with a standard structure-from-motion and multi-view stereo pipeline. We then refine the initial model by optimizing photometric rendering errors and polarimetric errors using multi-view RGB, AoP, and DoP images, where we propose a novel polarimetric cost function that enables an effective constraint on the estimated surface normal of each vertex, while considering four possible ambiguous azimuth angles revealed from the AoP measurement. The weight for the polarimetric cost is effectively determined based on the DoP measurement, which is regarded as the reliability of polarimetric information. Experimental results using both synthetic and real data demonstrate that our Polarimetric MVIR can reconstruct a detailed 3D shape without assuming a specific surface material and lighting condition.

摘要

偏振相机在 3D 重建方面具有很大的潜力,因为反射光的偏振角(AoP)和偏振度(DoP)与物体的表面法线有关。在本文中,我们提出了一种称为偏振多视图反向渲染(Polarimetric MVIR)的新的 3D 重建方法,该方法有效地利用了从输入的多视图彩色偏振图像中提取的几何、光度和偏振线索。我们首先通过使用标准的运动结构和多视图立体视觉管道进行几何重建来估计相机姿态和初始 3D 模型。然后,我们通过使用多视图 RGB、AoP 和 DoP 图像优化光度渲染误差和偏振误差来细化初始模型,其中我们提出了一种新颖的偏振代价函数,该函数能够有效地约束每个顶点的估计表面法线,同时考虑从 AoP 测量中揭示的四个可能的模糊方位角。基于被视为偏振信息可靠性的 DoP 测量,有效地确定了偏振代价的权重。使用合成和真实数据的实验结果表明,我们的 Polarimetric MVIR 可以在不假设特定表面材料和照明条件的情况下重建详细的 3D 形状。

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