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Potential of using satellite based vegetation indices and biophysical variables for the assessment of the water footprint of crops

机译:利用卫星植被指数和生物物理变量评估农作物水足迹的潜力

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Satellite remote sensing techniques play an important role in crop identification, acreage and production estimation, disease and stress detection, and soil and water resources characterization because they provide spatially explicit information and access to remote locations. The main objective of the study is to highlight the potential of using remote sensing techniques in the research field of water management, especially for "water footprint" assessment. In this paper, several vegetation indices (NDVI, NDWI, etc) and biophysical variables (LAI, fAPAR) are key variables to potentially be estimated by remote sensing and used in water footprint studies. The combination of these input parameters brings several limitations regarding the discrepancies in temporal and spatial resolution and data availability, which are described and discussed in detail. MODIS, Landsat, SPOT Vegetation and Meteosat data were used in order to estimate evapotranspiration and vegetation indices. The results of this study show the usefulness of satellite data for water footprint assessment and were obtained by the Remote Sensing Working Group in the framework of the ESSEM COST Action ES1106, "Assessment of EUROpean AGRIculture WATer use and trade under climate change" (EURO-AGRIWAT).
机译:卫星遥感技术在作物鉴定,种植面积和产量估算,疾病和压力检测以及土壤和水资源特征分析中发挥着重要作用,因为它们提供了空间明确的信息并可以访问偏远地区。这项研究的主要目的是强调在水管理研究领域,特别是在“水足迹”评估中使用遥感技术的潜力。在本文中,几种植被指数(NDVI,NDWI等)和生物物理变量(LAI,fAPAR)是可能通过遥感估算并用于水足迹研究的关键变量。这些输入参数的组合带来了一些有关时间和空间分辨率以及数据可用性方面的差异的限制,下面将详细介绍和讨论这些限制。为了估计蒸散量和植被指数,使用了MODIS,Landsat,SPOT植被和Meteosat数据。这项研究的结果表明,卫星数据对于水足迹评估是有用的,并且是由遥感工作组在ESSEM COST行动ES1106“评估气候变化下的欧洲农业WATer使用和贸易的评估”框架下获得的(EURO- AGRIWAT)。

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