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首页> 外文期刊>Remote Sensing >Toward a Satellite-Based System of Sugarcane Yield Estimation and Forecasting in Smallholder Farming Conditions: A Case Study on Reunion Island
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Toward a Satellite-Based System of Sugarcane Yield Estimation and Forecasting in Smallholder Farming Conditions: A Case Study on Reunion Island

机译:基于卫星的小农户甘蔗产量估算和预报系统:以留尼汪岛为例

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Estimating sugarcane biomass is difficult to achieve when working with highly variable spatial distributions of growing conditions, like on Reunion Island. We used a dataset of in-farm fields with contrasted climatic conditions and farming practices to compare three methods of yield estimation based on remote sensing: (1) an empirical relationship method with a growing season-integrated Normalized Difference Vegetation Index NDVI, (2) the Kumar-Monteith efficiency model, and (3) a forced-coupling method with a sugarcane crop model (MOSICAS) and satellite-derived fraction of absorbed photosynthetically active radiation. These models were compared with the crop model alone and discussed to provide recommendations for a satellite-based system for the estimation of yield at the field scale. Results showed that the linear empirical model produced the best results (RMSE = 10.4 t·ha−1). Because this method is also the simplest to set up and requires less input data, it appears that it is the most suitable for performing operational estimations and forecasts of sugarcane yield at the field scale. The main limitation is the acquisition of a minimum of five satellite images. The upcoming open-access Sentinel-2 Earth observation system should overcome this limitation because it will provide 10-m resolution satellite images with a 5-day frequency.
机译:当在如留尼汪岛那样的生长条件的高度可变的空间分布中工作时,很难估算出甘蔗的生物量。我们使用气候条件和耕作条件相反的农田数据集来比较三种基于遥感的产量估算方法:(1)经验关系法和生长季节综合归一化差异植被指数NDVI,(2) Kumar-Monteith效率模型,以及(3)强制耦合方法与甘蔗作物模型(MOSICAS)和卫星衍生的吸收的光合有效辐射的比例。将这些模型与单独的作物模型进行了比较,并进行了讨论,以为基于卫星的系统提供建议,以估计田间规模的产量。结果表明,线性经验模型产生的结果最好(RMSE = 10.4 t·ha -1 )。因为此方法也是最简单的设置方法,并且需要较少的输入数据,所以它似乎最适合在田间规模上进行甘蔗产量的运营估算和预测。主要限制是至少要获取五个卫星图像。即将面世的开放式Sentinel-2地球观测系统应克服这一限制,因为它将提供5天频率的10毫米分辨率的卫星图像。

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