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Non-destructive detection of local radishes' hollow hearts by hyperspectral imaging combined with support vector machine

机译:Hyperspectral成像与支持向量机的非破坏性检测局部萝卜空心心脏

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Hollow hearts are the majorfactor which affects the edibility of local radishes in Hangzhou, RR. China. In the local variety of the radish (Yidianhong), the rate of hollow hearts accounts for 1/3 approximately. Identifying by naked eyes after cuttingopen the local radish based on experience is the way to differentiate edible local radishes from inedible radishes with hollow hearts at present. This method is simple but destructive, while hyperspectral imaging combined with chemometrics could bypass this limitation and its feasibility was investigated. 155 local radishes (116 edible samples and 39 inedible samples with hollow hearts inside) were used in this work and the reflection hyperspectral image (400-1OOOnm) of each sample was acquired. After extracting the average spectrum and comparing various methods for spectral preprocessing, such as multiplicative scatter correction (MSC), standard normal variate (SNV) and mean-normalization, the raw spectra were applied to establish the calibration setand a SVM model was then developed. The parameter of the SVM model was classification (C-SVC) for the type, polynomial for the kernel type, 3 for degree, 0.5 for C value and 0.00195 forg. The accuracy of the calibration set and the prediction set were 100% and 96.08%, respectively. Hyperspectral imaging combined with SVM provides a rapid, non-destructive and accurate way to differentiate edible local radishes from inedible local radishes with hollow hearts.
机译:空心的心是大马具,影响杭州港口当地萝卜的可解性。中国。在当地的萝卜(伊甸红),空心心率约为1/3大约。基于经验,裸眼识别肉眼是在经验中区分可食用萝卜与空心心中的可食用陶器的方式。这种方法很简单但破坏性,而Hyperspectral成像与化学测定学相结合可以绕过这种限制,并且研究了其可行性。在该工作中使用155个本地萝卜(116个可食用的样品和39个具有空心心脏的可Inseible样品),并获得每个样品的反射高光谱图像(400-1oOnm)。在提取平均光谱并比较各种方法以进行光谱预处理,例如乘法散射校正(MSC),标准正常变化(SNV)和平均归一化,施加原始光谱以建立校准套件,然后开发SVM模型。 SVM模型的参数是类型的分类(C-SVC),用于内核类型的多项式,3度,C值为0.5,0.00195锻造。校准组的精度和预测集分别为100%和96.08%。 Hyperspectral成像与SVM相结合,提供了一种快速,无损和准确的方式,可利用空心心脏从不可食用的本地萝卜区分可食用的本地萝卜。

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