首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Empirical model for matching spectrophotometric reflectance of yarn windings and multispectral imaging reflectance of single strands of yarns
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Empirical model for matching spectrophotometric reflectance of yarn windings and multispectral imaging reflectance of single strands of yarns

机译:纱线卷取的分光光度反射率与单股纱线的多光谱成像反射率匹配的经验模型

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摘要

The state-of-the-art multispectral imaging system can directly acquire the reflectance of a single strand of yarn that is impossible for traditional spectrophotometers. Instead, the spectrophotometric reflectance of a yarn winding, which is constituted by yarns wound on a background card, is regarded as the yarn reflectance in textile. While multispectral imaging systems and spectrophotometers can be separately used to acquire the reflectance of a single strand of yarn and corresponding yarn winding, the quantitative relationship between them is not yet known. In this paper, the relationship is established based on models that describe the spectral response of a spectrophotometer to a yarn winding and that of a multispectral imaging system to a single strand of yarn. The reflectance matching function from a single strand of yarn to corresponding yarn winding is derived to be a second degree polynomial function, which coefficients are the solutions of a constrained nonlinear optimization problem. Experiments on 100 pairs of samples show that the proposed approach can reduce the color difference between yarn windings and single strands of yarns from 2.449 to 1.082 CIEDE2000 units. The coefficients of the optimal reflection matching function imply that the reflectance of a yarn winding measured by a spectrophotometer consists of not only the intrinsic reflectance of yarn but also the nonignorable interreflection component between yarns. (C) 2015 Optical Society of America
机译:先进的多光谱成像系统可以直接获取单股纱线的反射率,这是传统分光光度计无法实现的。取而代之的是,由缠绕在背景卡上的纱线构成的纱线卷的分光光度反射率被认为是纺织品中的纱线反射率。尽管可以将多光谱成像系统和分光光度计分别用于获取单根纱线和相应纱线缠绕的反射率,但它们之间的定量关系尚不清楚。在本文中,基于描述分光光度计对纱线缠绕的光谱响应以及多光谱成像系统对单根纱线的光谱响应的模型建立了关系。从单根纱线到相应纱线缠绕的反射率匹配函数被推导为二次多项式函数,该系数是约束非线性优化问题的解。在100对样本上进行的实验表明,该方法可以将纱线缠绕和单股纱线之间的色差从2.449 CIEDE2000单位降低到1.082 CIEDE2000单位。最佳反射匹配函数的系数意味着用分光光度计测量的纱线卷绕的反射率不仅包括纱线的固有反射率,还包括纱线之间不可忽略的相互反射分量。 (C)2015年美国眼镜学会

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