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测量高散射材料的光学特性。

Measuring the Optical Properties of Highly Diffuse Materials.

作者信息

Nguyen Mathieu, Thomas Jean-Baptiste, Farup Ivar

机构信息

Department of Computer Science, Norwegian University of Science and Technology (NTNU), 2815 Gjøvik, Norway.

Imagerie et Vision Artificielle (ImVIA) Laboratory, Department IEM (Informatique, Électronique, Mécanique), Université de Bourgogne, 21000 Dijon, France.

出版信息

Sensors (Basel). 2023 Aug 1;23(15):6853. doi: 10.3390/s23156853.

Abstract

Measuring the optical properties of highly diffuse materials is a challenge as it could be related to the white colour or an oversaturation of pixels in the acquisition system. We used a spatially resolved method and adapted a nonlinear trust-region algorithm to the fit Farrell diffusion theory model. We established an inversion method to estimate two optical properties of a material through a single reflectance measurement: the absorption and the reduced scattering coefficient. We demonstrate the validity of our method by comparing results obtained on milk samples, with a good fitting and a retrieval of linear correlations with the fat content, given by R2 scores over 0.94 with low -values. The values of absorption coefficients retrieved vary between 1 × 10-3 and 8 × 10-3 mm-1, whilst the values of the scattering coefficients obtained from our method are between 3 and 8 mm-1 depending on the percentage of fat in the milk sample, and under the assumption of the anisotropy factor g>0.8. We also measured and analyzed the results on white paint and paper, although the paper results were difficult to relate to indicators. Thus, the method designed works for highly diffuse isotropic materials.

摘要

测量高度漫射材料的光学特性是一项挑战,因为这可能与采集系统中的白色或像素过饱和有关。我们采用了一种空间分辨方法,并将非线性信赖域算法应用于拟合法雷尔扩散理论模型。我们建立了一种反演方法,通过单次反射率测量来估计材料的两种光学特性:吸收系数和约化散射系数。我们通过比较牛奶样品的测量结果来证明我们方法的有效性,结果显示拟合良好,且与脂肪含量的线性相关性检索结果良好,R2分数超过0.94且低值较低。反演得到的吸收系数值在1×10-3至8×10-3mm-1之间,而根据牛奶样品中的脂肪百分比以及在各向异性因子g>0.8的假设下,我们方法得到的散射系数值在3至8mm-1之间。我们还对白漆和纸张进行了测量和结果分析,尽管纸张的结果难以与指标相关联。因此,所设计的方法适用于高度漫射的各向同性材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2006/10422425/5c839baa2abb/sensors-23-06853-g001.jpg

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