首页> 外文期刊>Journal of Food Measurement and Characterization >Potato hierarchical clustering and doneness degree determination by near-infrared (NIR) and attenuated total reflectance mid-infrared (ATR-MIR) spectroscopy
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Potato hierarchical clustering and doneness degree determination by near-infrared (NIR) and attenuated total reflectance mid-infrared (ATR-MIR) spectroscopy

机译:近红外(NIR)的土豆层次聚类和送达度测定,并减弱总反射中红外线(ATR-MIR)光谱

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摘要

Near-infrared (NIR) and attenuated total reflectance mid-infrared (ATR-MIR) spectroscopy were used to identify potato varieties and detect potato doneness degree. The varieties of potato tubers can be successfully classified by hierarchical cluster analysis (HCA). The partial least squares regression (PLSR) model exhibited good prediction result for the doneness degree evaluation. Principal component and first-derivative iteration algorithm (PCFIA) was introduced to select feature variables instead of using the full wavelength spectra for modelling. Based on two sets of feature variables selected from NIR and MIR regions, both NIR–PCFIA–HCA and MIR–PCFIA–HCA showed higher performances of hierarchical clustering. Moreover, NIR–PCFIA–PLSR and MIR–PCFIA–PLSR models were effectively used to predict tuber doneness degree, yielding the RP as high as 0.935 and the RMSEP as low as of 0.503. It is concluded that the PCFIA is an effective approach for feature variable selection, and both NIR and MIRspectroscopic techniques are capable of classifying potato varieties and determining potato doneness degree.
机译:近红外(NIR)和减毒总反射率中红外(ATR-MIR)光谱法用于鉴定马铃薯品种并检测马铃薯排水度。薯片品种可以通过分层聚类分析(HCA)成功分类。部分最小二乘回归(PLSR)模型表现出倾向度评估的良好预测结果。引入了主成分和第一衍生迭代算法(PCFIA)以选择特征变量而不是使用全波长光谱来建模。基于从NIR和MIR区域中选择的两组特征变量,NIR-PCFIA-HCA和MIR-PCFIA-HCA都显示出更高的分层聚类性能。此外,NIR-PCFIA-PLSR和MIR-PCFIA-PLSR模型可有效地用于预测块茎排放度,从高达0.935的RP,RMSP高达0.503。得出结论,PCFIA是特征变量选择的有效方法,并且NIR和MIRSPectroscopic技术能够对马铃薯品种进行分类并确定马铃薯排水度。

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  • 作者单位

    Food Refrigeration and Computerised Food Technology (FRCFT) School of Biosystems and Food Engineering Agriculture &

    Food Science Centre University College Dublin (UCD) National University of Ireland Belfield Dublin 4 Ireland;

    Department of Chemical and Environmental Engineering University of Nottingham Nottingham NG7 2RD UK;

    Food Refrigeration and Computerised Food Technology (FRCFT) School of Biosystems and Food Engineering Agriculture &

    Food Science Centre University College Dublin (UCD) National University of Ireland Belfield Dublin 4 Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 食品工业;
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