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A novel method for the nondestructive classification of different‐age Citri Reticulatae Pericarpium based on data combination technique

机译:基于数据组合技术的不同年龄CITRI reticilatae Pericarpium的非破坏性分类新方法

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摘要

The quality of Citri Reticulatae Pericarpium (CRP) is closely correlated with the aging time. However, CRPs in different storage ages are similar in appearance, and the young CRP may be labeled as the aged one to obtain the excess profit by some unscrupulous traders. Most traditional analysis methods are laborious and time‐consuming, and they can hardly realize the nondestructive classification. In this paper, a novel method based on near‐infrared diffuse reflectance spectroscopy (NIRDRS) and data combination technique for the nondestructive classification of different‐age CRPs was proposed. The CRPs in different storage ages (5, 10, 15, 20, and 25 years) were measured. The near‐infrared spectra of outer skin and inner capsule were obtained. Principal component analysis (PCA), soft independent modeling of class analogy (SIMCA), and Fisher's linear discriminant analysis (FLD), with different data pretreatment methods, were used for the classification analysis. Data combination of the outer skin and inner capsule spectra was discussed for further improving the classification results. The results show that multiple sensors provide more useful and complementary information than a single sensor does for improving the prediction accuracy. With the help of data combination strategy, 100% prediction accuracy can be obtained with both second‐order derivative–FLD and continuous wavelet transform–multiplicative scatter correction–FLD methods.
机译:Citri reticilatae Pericarpium(CRP)的质量与老化时间密切相关。然而,不同储存年龄的CRP在外观中类似,年轻的CRP可以标记为老年人,以获得一些肆无忌惮的交易者获得过剩的利润。大多数传统的分析方法都是费力且耗时的,并且他们几乎无法实现非破坏性分类。在本文中,提出了一种基于近红外漫反射光谱(NIRDRS)的新方法和用于不同年龄CRP的非破坏性分类的数据组合技术。测量不同储存年龄(5,10,15,20和25岁)的CRP。得到外皮和内囊的近红外光谱。主要成分分析(PCA),类类比(SIMCA)的软独立建模,以及具有不同数据预处理方法的Fisher的线性判别分析(FLD)用于分类分析。讨论了外皮和内胶囊光谱的数据组合,用于进一步改善分类结果。结果表明,多个传感器提供比单个传感器更具有用和互补的信息,以提高预测精度。在数据组合策略的帮助下,通过二阶导数-FLD和连续小波变换乘法散射校正-FLD方法可以获得100%的预测精度。

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