Fiber-optic spectroscopic sensor for reactive dye mixture spectrum synthesis in textile industry

O. Conde, A. Cubillas, P. Anuarbe, J. López-Higuera, M. Gutierrez, V. Martinez
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引用次数: 5

Abstract

A method for the automatic synthesis of the Ultraviolet-Visible-Near Infrared (UV-Vis-NIR) absorption and transmission spectra of dye mixtures based on the absorption characteristics of their individual dyes is proposed in this paper. Multiple Linear Regression models (MLR) of each dye are obtained using a fiber-optic set-up operating in the 200-1100 nm wavelength range. Textile dyes are thick and dense and, consequently, optically opaque. This gives rise to high absorbance values which do not permit the direct comparison of different textile dye spectra for quality assurance purposes. The proposed multivariate method allows to construct a general model adjusted to the number and concentration of the dyes in the mixture. Furthermore, this dye spectrum synthesis can provide the optimum dilution factor needed to compare two different dye mixtures and test their similarity degree. With the proposed system, the obtained spectral correlation coefficients between the measured and synthesized spectra of a dye mixture are greater than 99% for both the transmission and absorption spectra.
用于纺织工业活性染料混合光谱合成的光纤光谱传感器
本文提出了一种根据染料的吸收特性自动合成染料混合物的紫外-可见-近红外(UV-Vis-NIR)吸收和透射光谱的方法。每种染料的多元线性回归模型(MLR)使用光纤装置工作在200- 1100nm波长范围内。纺织染料又厚又密,因此不透明。这就产生了高吸光度值,不允许为保证质量而直接比较不同的纺织染料光谱。所提出的多变量方法允许构建一个通用模型,以调整混合物中染料的数量和浓度。此外,这种染料光谱合成可以提供比较两种不同染料混合物所需的最佳稀释系数,并测试它们的相似程度。在该系统下,染料混合物的透射光谱和吸收光谱的相关系数均大于99%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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