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The disease severity estimation of bacterial spot disease of processing tomato based on hyperspectral remote sensing

机译:基于高光谱遥感的加工番茄细菌斑病病害严重度估算

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This paper will determine the canopy spectral reflectance and disease severity of processing lomato bacterial spot disease in field and disease nursery. The canopy spectral reflectance In different varieties and different growth stages are transformed into first-order differential, second-order differential, and inverse logarithm spectral reflectance. We analyze the correlation of the disease severity and primitive spectral reflectance, first-order differential, second-order differential, and inverse logarithm spectral reflectance, in order to look for the sensitive band of diseased processing tomato. The sensitive spectrum is established for the model of disease severity and test. The result shows: according to the R and F value of regression between disease severity and primitive spectral reflectance, first-order differential, second-order differential, and inverse logarithm spectral reflectance, R, R, R, R, R, FD, FD,FD, FD, FD, SD, SD, SD, SD, SD, 1/log, 1/log, 1/log, 1/log, 1/log are sensitive spectrums. The partial least-squares regression model of second-order sensitive spectral reflectance and disease severity is the best model, because there are explain ability of disease severity of 0.824 and RMSE was 0.127.The R of fitting with observation value and predictive value is 0.723. It had practical value to monitor the large area of processing tomato bacterial spot disease using hyperspectral.
机译:本文将确定田间和疾病苗圃中加工腰果细菌斑病的冠层光谱反射率和疾病严重程度。冠层光谱反射率在不同的品种和不同的生长阶段被转化为一阶微分,二阶微分和对数倒数光谱反射率。我们分析了疾病严重程度与原始光谱反射率,一阶微分,二阶微分和对数倒数光谱反射率的相关性,以寻找病态加工番茄的敏感带。建立了用于疾病严重程度和测试模型的敏感光谱。结果表明:根据疾病严重程度与原始光谱反射率之间的回归R和F值,一阶微分,二阶微分和反对数光谱反射率,R,R,R,R,R,R,FD,FD ,FD,FD,FD,SD,SD,SD,SD,SD,1 / log,1 / log,1 / log,1 / log,1 / log是敏感光谱。二阶敏感光谱反射率和疾病严重程度的偏最小二乘回归模型是最好的模型,因为该疾病的严重程度的解释能力为0.824,RMSE为0.127。与观察值和预测值的拟合R为0.723。利用高光谱监测大面积加工番茄细菌斑病具有实用价值。

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