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Optimal estimation of spectral reflectance based on metamerism

机译:基于同色异谱的光谱反射率最佳估计

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In this paper, we proposed an accurate estimation method for spectral reflectance of objects captured in an image. The spectral reflectance is simply modeled by a linear combination of three basic spectrums of R, G, and B colors respectively, named as spectral reflective bases of objects, which are acquired by solving a linear system based on the principle of color metamerism. Some experiments were performed to evaluate the accuracy of the estimated spectral reflectance of objects. The average mean square error of 24 colors in Macbeth checker between we simulated and the measured is 0.0866, and the maximum is 0.310. In addition, the average color difference of the 24 colors is less than 1.5 under the D65 illuminant. There are 13 colors having their color difference values less than 1, and other 8 colors having the values during the range of 1 and 2. Only three colors are relatively larger, with the differences of 2.558, 4.130 and 2.569, from the colors of No. 2, No. 13, and No. 18 in Macbeth checker respectively. Furthermore, the computational cost of this spectral estimation is very low and suitable for many practical applications in real time.
机译:在本文中,我们提出了一种精确的估计方法,用于捕获图像中物体的光谱反射率。光谱反射率仅通过分别将R,G和B颜色的三个基本光谱(称为对象的光谱反射基础)进行线性组合来建模,这些基础光谱是通过基于颜色同色异谱原理求解线性系统而获得的。进行了一些实验以评估估计的物体光谱反射率的准确性。我们在Macbeth Checker中模拟和测量的24种颜色的平均均方误差为0.0866,最大值为0.310。另外,在D65光源下,这24种颜色的平均色差小于1.5。有13种颜色的色差值小于1,其他8种颜色的值在1和2范围内。与No色相比,只有三种颜色相对较大,相差2.558、4.130和2.569。分别在Macbeth Checker中的2号,13号和18号。此外,该频谱估计的计算成本非常低,并且适合实时地在许多实际应用中使用。

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