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Continuous Monitoring of Visible and Near-Infrared Band Reflectance from a Rice Paddy for Determining Nitrogen Uptake Using Digital Cameras

机译:连续监测稻田的可见和近红外波段反射率,以便使用数码相机确定氮的吸收

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A two-band digital imaging system —one band for the visible red band (RED, 630?670 nm) and the other for the near infrared band (NIR, 820?900 nm)— was devised and positioned at a height of 12 m above a rice field of 300 m2 in area during the 2007 growing season. The imaging system automatically logged bird’s-eye view images at 10-min intervals from 0800?1600 every day. Radiometric corrections for the pairs of two-band images were done using solar irradiance sensors and preceding calibrations to calculate daily band-reflectance and the normalized difference vegetation index (NDVI) values for 9 plots of rice plants, with 3 levels of planting density and basal fertilization. The daily- averaged reflectance values in the RED and the NIR bands showed different but smooth seasonal changing patterns according to the growth of plants. At the maximum tiller number and the panicle formation stages, the RED and NIR reflectance values had correlation coefficients (r) of 0.79 and 0.81 with above-ground nitrogen absorption per unit land area (NA, g m-2), respectively, whereas the NDVI using the two band reflectance values showed r-value of -0.13. An empirically derived equation for the NA using two band reflectance values showed r-value of 0.96 and a root mean square of error (RMSE) 0.5 g m-2 (10% of the mean observed NA) in the estimation for the original (not validated) data set acquired at the maximum tiller number and the panicle formation stages. The results indicated that reflectance observation in the RED and NIR bands using the digital imaging system was potentially effective for assessing rice growth.
机译:设计了一个两波段数字成像系统,一个波段用于可见的红色波段(RED,630-670 nm),另一个波段用于近红外波段(NIR,820-900 nm),其高度设置为12 m在2007年生长季节的300平方米稻田上方。成像系统每天从0800?1600开始每隔10分钟记录一次鸟瞰图像。使用太阳辐照度传感器和先前的校准对两带图像对进行辐射校正,以计算9个水稻田的日带反射率和归一化差异植被指数(NDVI)值,其中三个种植密度和基础水平受精。根据植物的生长情况,RED和NIR波段的日平均反射率值显示出不同但平稳的季节性变化模式。在最大分till数和穗形成阶段,RED和NIR反射率值与单位陆地面积(NA,g m-2)的地上氮吸收的相关系数(r)分别为0.79和0.81。使用两个波段反射率值的NDVI显示r值为-0.13。根据经验得出的使用两个波段反射率值得出的NA方程,在原始估计值中,r值为0.96,均方根误差均方根(RMSE)为0.5 g m-2(平均观察到的NA的10%)。未验证)在最大分till数和穗形成阶段获得的数据集。结果表明,使用数字成像系统对RED和NIR波段的反射率进行观察对于评估水稻的生长可能是有效的。

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