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Soluble Solid Content Prediction System of Honey based on Spectral Transmittance Profile of Hyperspectral Imaging

机译:基于高光谱成像光谱透射率谱的蜂蜜可溶性固形物含量预测系统

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Honey content is constructed by a combination of glucose and fructose which a high sugar content. One of the honey qualities is contributed by the added adulterant in honey producing such as artificial glucose or fructose. Therefore, the soluble solid content of honey is essential to predict according to differentiate the added content of honey. The honey image was acquired using transmittance mode in the Vis-NIR range of 400-1000 nm. The complete system consists of a Hyperspectral camera at 448 bands, slider, a 200 W halogen lamp and light diffuser. The processing method performs image correction, segmentation, feature extraction, feature reduction, and a regression model. The region interest area of the honey sample was selected at the center of honey that prepared in petry-dish. Partial Least Square Regression (PLSR) was used as the feature reduction and regression model to construct the transfer model of soluble solid content based on the transmittance profile of honey. The Digital Refractometer was used to generate the reference standard of the soluble solid content. Three different producers and five types of botanical origin were used as a sample of honey. The artificial glucose or fructose was added to the original honey to produce five variants of soluble solid content. The result of RMSE for training and testing data is 0.07 and 0.45, respectively. Based on the result, the proposed system could be used as an alternative method to predict the soluble solid content in honey with excellent accuracy.
机译:蜂蜜含量是由高糖含量的葡萄糖和果糖组成的。蜂蜜品质之一是在蜂蜜生产中添加的掺杂剂(例如人造葡萄糖或果糖)带来的。因此,蜂蜜的可溶性固形物含量对于根据区分蜂蜜的添加量进行预测至关重要。使用Vis-NIR范围为400-1000 nm的透射率模式获取蜂蜜图像。完整的系统由448波段的高光谱相机,滑块,200 W卤素灯和光扩散器组成。该处理方法执行图像校正,分割,特征提取,特征缩小和回归模型。蜂蜜样品的区域感兴趣区域选择在用培养皿制成的蜂蜜的中心。偏最小二乘回归(PLSR)作为特征约简和回归模型,基于蜂蜜的透射率曲线,构建了可溶性固形物的传递模型。数字折光仪用于生成可溶性固形物的参考标准。三种样品分别来自三种不同的生产者和五种植物来源。将人造葡萄糖或果糖添加到原始蜂蜜中,以产生五种可溶性固形物含量的变体。训练和测试数据的RMSE结果分别为0.07和0.45。基于结果,该系统可作为一种替代方法,以优异的精度预测蜂蜜中的可溶性固形物含量。

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