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Lighting estimation of a convex Lambertian object using weighted spherical harmonic frames - Springer

机译:使用加权球谐框架的凸朗伯对象的照明估计-Springer

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摘要

An explicit lighting estimation from a single image of Lambertian objects is influenced by two factors: data incompletion and noise contamination. Measurement of lighting consistency purely using the orthogonal spherical harmonic basis cannot achieve an accurate estimation. We present a novel signal-processing framework to represent the lighting field. We construct a weighted spherical harmonic frame with geometric symmetry on the sphere ({S^2}). Weighted spherical harmonic frames are defined over the generating rotation matrices about symmetry axes of finite symmetry subgroups of (SO(3)), and the generating functions are weighted spherical harmonic basis functions. Compared with the orthogonal spherical harmonic basis, the redundant weighted spherical harmonic frames not only describe the multidirectional lighting distribution intuitively, but also resist the noise theoretically. Subsequently, we analyze the relationship of the irradiance to the incoming radiance in terms of weighted spherical harmonic frames and reconstruct the lighting function filtered by the Lambertian BRDF (bidirectional reflectance distribution function). The experiments show that the frame coefficients of weighted spherical harmonic frames can better characterize the complex lighting environments finely and robustly.
机译:从朗伯对象的单个图像进行的显式照明估计受以下两个因素影响:数据不完整和噪声污染。仅使用正交球谐函数基础的照明一致性测量无法实现准确的估计。我们提出了一种新颖的信号处理框架来代表照明领域。我们构造了一个在球体上{{S ^ 2})具有几何对称性的加权球谐框架。在(SO(3))的有限对称子组的对称轴周围的生成旋转矩阵上定义了加权球谐框架,并且生成函数是加权球谐基函数。与正交球谐基础相比,冗余加权球谐框架不仅直观地描述了多向照明分布,而且从理论上抵抗了噪声。随后,我们根据加权球谐框架分析了辐照度与入射辐照度之间的关系,并重建了由Lambertian BRDF滤波的照明函数(双向反射率分布函数)。实验表明,加权球谐框架的框架系数可以更好,更精细地表征复杂的照明环境。

著录项

  • 来源
    《Signal, Image and Video Processing》 |2015年第1期|57-75|共19页
  • 作者单位

    1.Institute of Automation Chinese Academy of Sciences 100190 Beijing P.R. China;

    1.Institute of Automation Chinese Academy of Sciences 100190 Beijing P.R. China;

    1.Institute of Automation Chinese Academy of Sciences 100190 Beijing P.R. China;

    1.Institute of Automation Chinese Academy of Sciences 100190 Beijing P.R. China 2.College of Control Engineering Northeastern University at Qinhuangdao Qinhuangdao P.R. China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lighting estimation; Weighted spherical harmonic frame; Lambertian;

    机译:光照估计;加权球谐框架;朗伯;

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