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Appearance Reconstruction of Fluorescent Objects Based on Reference Geometric Factors

机译:基于参考几何因子的荧光物体的外观重建

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An approach is proposed for the reliable appearance reconstruction of fluorescent objects under arbitrary conditions of material and illuminant based on reference geometric factors. First, a large set of spectral images is acquired from a variety of scenes of fluorescent objects paired with a mutual illumination effect under different conditions. The target fluorescent object is constructed using a cube and a flat plate supporting it, and is subsequently illuminated using a directional light source. We produce many target objects of the same size with different fluorescent materials and observe them under different illumination conditions. The observed spectral images are subsequently decomposed into five components, combining the spectral functions and geometric factors. The reference geometric factors are independent of the material, illuminant, and illumination direction change; instead, they are only dependent on object geometries. A reliable estimation method of reference geometric factors is presented using the whole spectral images observed under various conditions. Further, we propose an algorithm for reconstructing a realistic appearance including mutual illumination effect under arbitrary conditions of material, illuminant, and illumination direction. Finally, the reliability of the proposed approach is examined experimentally.
机译:提出了一种基于参考几何因子在材料和光源的任意条件下可靠重建荧光物体外观的方法。首先,从荧光对象的各种场景中获取大量光谱图像,这些场景在不同条件下具有相互照明的效果。使用立方体和支撑它的平板构造目标荧光对象,然后使用定向光源进行照明。我们用不同的荧光材料生产许多大小相同的目标物体,并在不同的照明条件下对其进行观察。随后将观察到的光谱图像分解为五个部分,将光谱函数和几何因子结合在一起。参考几何因子与材料,光源和照明方向变化无关。相反,它们仅取决于对象的几何形状。利用在各种条件下观察到的整个光谱图像,提出了一种可靠的参考几何因子估计方法。此外,我们提出了一种用于重建逼真的外观的算法,包括在材料,光源和照明方向的任意条件下的相互照明效果。最后,通过实验检验了所提出方法的可靠性。

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