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Enhanced Processing of 1-km Spatial Resolution fAPAR Time Series for Sugarcane Yield Forecasting and Monitoring

机译:1公里空间分辨率fAPAR时间序列的增强处理,用于甘蔗产量预测和监测

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A processing of remotely-sensed Fraction of Absorbed Photosynthetically Active Radiation (fAPAR) time series at 1-km spatial resolution is established to estimate sugarcane yield over the state of São Paulo, Brazil. It includes selecting adequate time series according to the signal spatial purity, using thermal time instead of calendar time and smoothing temporally the irregularly sampled observations. A systematic construction of various metrics and their capacity to predict yield is explored to identify the best performance, and see how timely the yield forecast can be made. The resulting dataset not only reveals a strong spatio-temporal structure, but is also capable of detecting both absolute changes in biomass accumulation and changes in its inter-annual variability. Sugarcane yield can thus be estimated with a RMSE of 1.5 t/ha (or 2%) without taking into account the strong linear trend in yield increase witnessed in the past decade. Including the trend reduces the error to 0.6 t/ha, correctly predicting whether the yield in a given year is above or below the trend in 90% of cases. The methodological framework presented here could be applied beyond the specific case of sugarcane in São Paulo, namely to other crops in other agro-ecological landscapes, to enhance current systems for monitoring agriculture or forecasting yield using remote sensing.
机译:建立了在1 km空间分辨率下遥感吸收的光合有效辐射(fAPAR)时间序列的分数的处理,以估计巴西圣保罗州的甘蔗产量。它包括根据信号空间纯度选择适当的时间序列,使用热时间代替日历时间,并在时间上平滑不规则采样的观测值。探索了各种指标的系统构建及其预测产量的能力,以识别最佳性能,并查看可如何及时进行产量预测。所得数据集不仅揭示了强大的时空结构,而且还能够检测生物量积累的绝对变化及其年际变化的变化。因此,可以将甘蔗单产估计为1.5吨/公顷(或2%),而无需考虑过去十年中单产的强劲线性增长趋势。包括趋势在内,可将误差降低至0.6吨/公顷,可以正确预测90%的案例中给定年份的产量高于还是低于趋势。此处介绍的方法框架可以应用到圣保罗甘蔗的特殊情况之外,也可以应用到其他农业生态景观中的其他农作物,以增强当前的农业监测系统或使用遥感预测产量的系统。

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