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Detection of aphid infestation on pakchoi (Brassica chinensis) based on visible/near-infrared hyperspectral imaging technology

机译:基于可见/近红外高光谱成像技术检测Pakchoi(Brassica Chinensis)的蚜虫侵扰

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Green peach aphid is a major pest on pakchoi which could cause serious decline in quality and yield. This study employed hyperspectral imaging system to detect incipient infestation of aphid and identify different infestation stages. Chlorophyll fluorescence technology was employed to estimate the actual damage caused by aphid. Visible/near-infrared hyperspectral images (380 to 1030 nm) of pakchoi leaves infested by aphid were acquired and divided into five stages according to infestation days. SVMwas employed as classifier, and MCUVE, CARS, VCPA, MCFS and SPA were compared to select the best optimal characteristic wavelengths. The detection accuracy based on full band of the last three stages was 100% and accuracy of the first two stages was relatively low. MCFS acquired the best overall accuracy of 97.94% and 95.54%for train set and test set respectively among five selection methods. Chlorophyllfluorescence parameters of QYmax and qL_D2 confirmed that the damage to photosynthetic system in leaf was not serious in the first two stages. Thus, overall results indicated that hyperspectral imaging system could be used to detect incipient aphid infestation effectively.
机译:Green Peach Aphid是Pakchoi上的主要害虫,这可能导致质量和产量严重下降。本研究采用高光谱成像系统来检测蚜虫的初始侵染并鉴定不同的侵扰阶段。使用叶绿素荧光技术来估算蚜虫造成的实际损伤。通过蚜虫侵染的Pakchoi叶子的可见/近红外高光谱图像(380至1030nm),并根据侵扰天分为五个阶段。与分类器和MCUVE,CARS,VCPA,MCF和SPA一起使用SVMWA以选择最佳的最佳特性波长。基于最后三个阶段的满带的检测精度为100%,并且前两个阶段的精度相对较低。在五种选择方法中,MCFS分别获得了97.94%的最佳总体精度为97.94%和95.54%。 Qymax和QL_D2的叶绿素荧光参数证实,在前两个阶段,叶片中对光合体系的损坏并不严重。因此,总体结果表明,高光谱成像系统可用于有效地检测初生蚜虫侵扰。

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