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首页> 外文期刊>Instrumentation science & technology: Designs and applications for chemistry, biotechnology, and environmental science >NONLINEAR FUZZY LINGUISTICS FOR THE DETERMINATION OF NITROGEN MONOXIDE, NITROGEN DIOXIDE, AND SULFUR DIOXIDE BY MOLECULAR ABSORPTION SPECTROSCOPY
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NONLINEAR FUZZY LINGUISTICS FOR THE DETERMINATION OF NITROGEN MONOXIDE, NITROGEN DIOXIDE, AND SULFUR DIOXIDE BY MOLECULAR ABSORPTION SPECTROSCOPY

机译:分子吸收光谱法测定一氧化氮,二氧化氮和二氧化硫的非线性模糊语言学

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摘要

The nonlinearity and high dimensionality of spectra data affect the precision and the complexity of molecular absorption spectroscopy models. This article proposes a nonlinear fuzzy linguistic method for spectral quantitative analysis. A nonlinear fuzzy linguistic rule is presented. In the rule antecedent, a set operation was used to express the input variables by the fuzzy linguistic terms. A flexible polynomial equation of the input variables was the rule consequent. The fuzzy linguistic terms, the membership functions, and the nonlinear linguistic rules were initialized automatically by Gaussian kernel fuzzy clustering analysis, and the related parameters of nonlinear fuzzy linguistic rules were tuned by the iterative optimization for minimizing the root-mean square error. The principal components of the absorption measurements were extracted as input variables to reduce the complexity of the model. Experimental measurements employed a spectral dataset of flue gas for quantitative determination of the components that included sulfur dioxide, nitric oxide, and nitrogen dioxide. The experimental results verify the effectiveness of the theoretical approach.
机译:光谱数据的非线性和高维度会影响分子吸收光谱模型的精度和复杂性。本文提出了一种用于光谱定量分析的非线性模糊语言方法。提出了一种非线性模糊语言规则。在规则的先决条件中,使用设置操作通过模糊语言术语来表达输入变量。因此,输入变量的灵活的多项式方程式就是规则。通过高斯核模糊聚类分析自动初始化模糊语言项,隶属函数和非线性语言规则,并通过迭代优化调整非线性模糊语言规则的相关参数以最小化均方根误差。提取吸收测量的主要成分作为输入变量,以降低模型的复杂性。实验测量使用烟气的光谱数据集来定量确定包括二氧化硫,一氧化氮和二氧化氮的成分。实验结果验证了该理论方法的有效性。

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