Application of stable consistency wavelength in optimizing gasoline RON near-infrared analysis model transfer

IF 2.3 4区 化学 Q1 SOCIAL WORK Journal of Chemometrics Pub Date : 2023-07-08 DOI:10.1002/cem.3506
Hong-hong Wang, Hui Yuan, Yun-chao Hu, Zhi-xin Xiong, Zhi-jian Liu, Ying Wang, Hao-ran Huang
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Abstract

The purpose of model transfer is to solve the problem that multivariate calibration models cannot be shared among different near-infrared spectrometers. Taking gasoline as the research object, the transfer analysis of its octane number model was carried out. The gasoline samples collected by two near-infrared spectrometers of the same type were used as the research object. The screening wavelengths with consistent and stable signals (SWCSS) combined with competitive adaptive reweighted sampling (CARS), uninformative variable elimination (UVE), and successive projections algorithm (SPA) were used to reduce the adverse effects of invalid wavelengths in the SWCSS method; therefore, the analysis ability of the master model to the slave samples was improved. Partial least squares regression (PLSR) models based on SWCSS-UVE, SWCSS-CARS, and SWCSS-SPA algorithms were established, and comparison was made between their analytical capabilities for slave samples and those of SWCSS, direct standardization (DS) algorithm , piecewise direct standardization (PDS) algorithm, and slope/bias (S/B) algorithm. The results shown that the SWCSS-UVE and SWCSS-CARS methods can be used to establish models from the 231 and 6 wavelengths selected from the consistent wavelengths, respectively. The root mean square error of prediction (RMSEP) of the gasoline octane number (RON) content of the direct analysis of the spectrum measured by the slave machine was reduced from 5.7490 to 0.3226 and 0.3250, respectively, which was better than the single SWCSS and DS, PDS, and SWCSS-SPA methods, and was close to the model transfer accuracy of the S/B algorithm. The transfer accuracy of SWCSS-UVE and SWCSS-CARS was not much different, but the wavelength variable involved in the model transfer of the latter was much smaller than that of the former, and the AIC value of SWCSS-CARS was −59.59, which was much smaller than the akaike information criterion (AIC) value of SWCSS-UVE 398.42.

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稳定一致性波长在优化汽油RON近红外分析模型转移中的应用
模型迁移的目的是解决不同近红外光谱仪之间不能共享多变量标定模型的问题。以汽油为研究对象,对其辛烷值模型进行了传递分析。以两台同类型近红外光谱仪采集的汽油样品为研究对象。采用具有一致稳定信号的筛选波长(SWCSS)方法,结合竞争自适应重加权采样(CARS)、无信息变量消除(UVE)和逐次投影算法(SPA)来降低无效波长的不利影响;从而提高了主模型对从样本的分析能力。建立了基于SWCSS‐UVE、SWCSS‐CARS和SWCSS‐SPA算法的偏最小二乘回归(PLSR)模型,并将其对从样本的分析能力与SWCSS、直接标准化(DS)算法、分段直接标准化(PDS)算法和斜率/偏差(S/B)算法进行了比较。结果表明,SWCSS - UVE和SWCSS - CARS方法可以分别从一致性波长中选择231和6个波长建立模型。从机测得的光谱直接分析的汽油辛烷值(RON)含量预测均方根误差(RMSEP)分别从5.7490降低到0.3226和0.3250,优于单一SWCSS方法和DS、PDS和SWCSS‐SPA方法,接近S/B算法的模型传递精度。SWCSS‐UVE与SWCSS‐CARS的模型转移精度差异不大,但后者涉及的波长变量远小于前者,且SWCSS‐CARS的AIC值为- 59.59,远小于SWCSS‐UVE的akaike信息准则(AIC)值398.42。
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来源期刊
Journal of Chemometrics
Journal of Chemometrics 化学-分析化学
CiteScore
5.20
自引率
8.30%
发文量
78
审稿时长
2 months
期刊介绍: The Journal of Chemometrics is devoted to the rapid publication of original scientific papers, reviews and short communications on fundamental and applied aspects of chemometrics. It also provides a forum for the exchange of information on meetings and other news relevant to the growing community of scientists who are interested in chemometrics and its applications. Short, critical review papers are a particularly important feature of the journal, in view of the multidisciplinary readership at which it is aimed.
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