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A lighting robust fitting approach of 3D morphable model for face reconstruction

机译:用于面部重构的3D变形模型的光照鲁棒拟合方法

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Three-dimensional morphable model (3DMM) is a powerful tool for recovering 3D shape and texture from a single facial image. The success of 3DMM relies on two things: an effective optimization strategy and a realistic approach to synthesizing face images. However, most previous methods have focused on developing an optimization strategy under Phong's synthesis approach. In this paper, we adopt a more realistic synthesis technique that fully considers illumination and reflectance in the 3DMM fitting process. Using the sphere harmonic illumination model (SHIM), our new synthesis approach can account for more lighting factors than Phong's model. Spatially varying specular reflectance is also introduced into the synthesis process. Under SHIM, the cost function is nearly linear for all parameters, which simplifies the optimization. We apply our new optimization algorithm to determine the shape and texture parameters simultaneously. The accuracy of the recovered shape and texture can be improved significantly by considering the spatially varying specular reflectance. Hence, our algorithm produces an enhanced shape and texture compared with previous SHIM-based methods that recover shape from feature points. Although we use just a single input image in a profile pose, our approach gives plausible results. Experiments on a well-known image database show that, compared to state-of-the-art methods based on Phong's model, the proposed approach enhances the robustness of the 3DMM fitting results under extreme lighting and profile pose.
机译:三维可变形模型(3DMM)是用于从单个面部图像恢复3D形状和纹理的强大工具。 3DMM的成功取决于两件事:有效的优化策略和逼真的合成人脸图像的方法。但是,大多数以前的方法都集中在Phong的综合方法下开发优化策略。在本文中,我们采用了一种更现实的合成技术,该技术在3DMM拟合过程中充分考虑了照明和反射率。使用球谐照明模型(SHIM),我们的新合成方法比Phong模型可解释更多的照明因素。空间变化的镜面反射率也被引入到合成过程中。在SHIM下,所有参数的成本函数几乎都是线性的,从而简化了优化过程。我们应用新的优化算法来同时确定形状和纹理参数。通过考虑空间变化的镜面反射率,可以显着提高恢复的形状和纹理的准确性。因此,与以前的基于SHIM的从特征点恢复形状的方法相比,我们的算法产生了增强的形状和纹理。尽管我们在轮廓姿态中仅使用单个输入图像,但是我们的方法给出了合理的结果。在著名的图像数据库上进行的实验表明,与基于Phong模型的最新方法相比,所提出的方法增强了3DMM拟合结果在极端光照和轮廓姿势下的鲁棒性。

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