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Comparative analysis of rice seed viability detection based on differentspectral bands

机译:基于差异波段的水稻种子活力检测对比分析

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Rice seed vitality is one of the very important determining factors of high yield. Therefore, it is vital to test and determine seed vigor before sowing or sale for farmers as well as seed companies. It is particularly important to develop a method totest the viability of rice seeds quickly and non-destructively so far. Spectroscopy is a science and technology developed from experiments. In this study, two spectral bands of400-1lOOnm (spectral range I) and 980-1700nm (spectral range II) which contains visible and near-infrared spectroscopy combined with multiple data preprocessing methods and classification model were compared to identify the seed vigor. 100 normal rice seeds and 100 heat~damaged seeds were detected. The standard germination test was performed on the detected seeds to determine the vigor of seeds. The spectrograms were analyzed, and the two groups of experimental data were pre-processed separately, and the partial least squares discriminant analysis was used to discriminate the seed vigor. The data results showed that the accuracy of the seed vitality discrimination model based on spectral range II without pretreatment was higher than that of spectral range I. The accuracy of the first derivative classification were the highest in the two bands, and the accuracy of the two sets data were approximate. The experimental results showed that the spectral technique of the two bands had the potential to identify vigor of rice seeds, rapid and non-destructive detecting of rice seed vigor can be performed combined with a seed single granulation device.
机译:水稻种子活力是高产的非常重要的决定因素之一。因此,在为农民以及种子公司播种或销售之前,测试和确定种子活力至关重要。到目前为止,开发一种方法,尤其重要的是发展水稻种子的可行性。光谱学是一种从实验中开发的科技。在本研究中,将与含有可见和近红外光谱的400-1LoonM(光谱范围I)和980-1700nm(光谱范围II)的两个光谱带进行了比较与多数据预处理方法和分类模型进行比较。鉴定种子活力。检测到100种正常水稻种子和100种热〜受损的种子。对检测到的种子进行标准萌发试验以确定种子的活力。分析谱图,分别预处理两组实验数据,并且使用部分最小二乘判别分析来区分种子活力。数据结果表明,基于频谱范围II的种子生命力辨别模型的准确性高于光谱范围I的谱范围I.第一衍生物分类的准确性在两个频段中是最高的,以及两个频段的准确性设置数据是近似的。实验结果表明,两条带的光谱技术有可能识别水稻种子的活力,可以与种子单一造粒装置组合水稻种子活力的快速和非破坏性检测。

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