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Rapid analysis of dyed safflowers by color objectification and pattern recognition methods

机译:颜色目标化和模式识别方法快速分析染红花

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Objective Rapid discrimination of three classes of safflowers, dyed safflower, adulterated safflower, and pure safflower using computer vision and image processing algorithms. Methods A low cost computer vision system (CVS) was designed to measure the color of safflowers in the RGB (red, green, blue), L ? a ? b ? , and HSV (hue, saturation, vale) color spaces. The color moments in these three color spaces were extracted from the acquired images as color features of safflower. In addition, five kinds of pigments that are commonly used to dye safflowers were identified by high-performance liquid chromatography as a reference. Pattern recognition methods were investigated for rapid discrimination, including an unsupervised principal component analysis (PCA) algorithm and a supervised partial least squares discriminant analysis (PLS-DA) algorithm. Results The mean error ( e ˉ ) between color values measured with the colorimeter and calculated with the CVS was 2.4%, with a high correlation coefficient (r) of 0.9905. This result indicated that the established CVS was reliable for color estimation of safflowers. The PLS-DA model, which had a total accuracy of 91.89%, outperformed the PCA model in classifying pure, adulterated, and dyed safflowers. Conclusion The color objectification is a promising tool for rapid identification of dyed and adulterated safflowers.
机译:目的使用计算机视觉和图像处理算法快速区分三类红花,染色红花,掺假红花和纯红花。方法设计了一种低成本的计算机视觉系统(CVS),用于测量RGB中红花的颜色(红色,绿色,蓝色),L?一种 ? ?以及HSV(色相,饱和度,淡紫色)色彩空间。从获取的图像中提取这三个颜色空间中的颜色矩作为红花的颜色特征。另外,通过高效液相色谱法鉴定了常用于红花染色的五种颜料作为参考。研究了模式识别方法以进行快速区分,包括无监督主成分分析(PCA)算法和有监督偏最小二乘判别分析(PLS-DA)算法。结果用色度计测量和用CVS计算的颜色值之间的平均误差(eˉ)为2.4%,具有0.9905的高相关系数(r)。该结果表明所建立的CVS对于红花的颜色估计是可靠的。 PLS-DA模型的总准确度为91.89%,在对纯,掺假和染色的红花进行分类方面优于PCA模型。结论颜色目标化是快速鉴定染色和掺假红花的有前途的工具。

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