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Monitoring Global Croplands with Coarse Resolution Earth Observations: The Global Agriculture Monitoring (GLAM) Project

机译:用高分辨率地球观测仪监测全球农田:全球农业监测(GLAM)项目

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In recent years there has been a dramatic increase in the demand for timely, comprehensive global agricultural intelligence. Timely information on global crop production is indispensable for combating the growing stress on the world’s crop production and for securing both short-term and long-term stable and reliable supply of food. Global agriculture monitoring systems are critical to providing this kind of intelligence and global earth observations are an essential component of an effective global agricultural monitoring system as they offer timely, objective, global information on croplands distribution, crop development and conditions as the growing season progresses. The Global Agriculture Monitoring Project (GLAM), a joint NASA, USDA, UMD and SDSU initiative, has built a global agricultural monitoring system that provides the USDA Foreign Agricultural Service (FAS) with timely, easily accessible, scientifically-validated remotely-sensed data and derived products as well as data analysis tools, for crop-condition monitoring and production assessment. This system is an integral component of the USDA’s FAS Decision Support System (DSS) for agriculture. It has significantly improved the FAS crop analysts’ ability to monitor crop conditions, and to quantitatively forecast crop yields through the provision of timely, high-quality global earth observations data in a format customized for FAS alongside a suite of data analysis tools. FAS crop analysts use these satellite data in a ‘convergence of evidence’ approach with meteorological data, field reports, crop models, attaché reports and local reports. The USDA FAS is currently the only operational provider of timely, objective crop production forecasts at the global scale. These forecasts are routinely used by the other US Federal government agencies as well as by commodity trading companies, farmers, relief agencies and foreign governments. This paper discusses the operational components and new developments of the GLAM monitoring system as well as the future role of earth observations in global agricultural monitoring.
机译:近年来,对及时,全面的全球农业情报的需求急剧增加。及时获得有关全球农作物产量的信息对于消除对世界农作物产量日益增长的压力以及确保短期和长期稳定可靠的粮食供应都是必不可少的。全球农业监测系统对于提供这种情报至关重要,而全球地球观测是有效的全球农业监测系统的重要组成部分,因为随着生长期的发展,它们提供有关耕地分布,作物生长和状况的及时,客观的全球信息。 NASA,USDA,UMD和SDSU联合发起的全球农业监测项目(GLAM)已建立了一个全球农业监测系统,该系统可为USDA外国农业服务局(FAS)提供及时,易于访问且经过科学验证的遥感数据以及用于作物状况监测和生产评估的衍生产品以及数据分析工具。该系统是USDA农业FAS决策支持系统(DSS)的组成部分。通过以FAS定制的格式提供及时,高质量的全球地球观测数据以及一套数据分析工具,它大大提高了FAS作物分析师监测作物状况和定量预测作物产量的能力。 FAS作物分析师以“证据融合”的方式将这些卫星数据与气象数据,田间报告,作物模型,随员报告和本地报告结合使用。 USDA FAS目前是全球范围内及时,客观的作物产量预测的唯一运营提供商。其他美国联邦政府机构以及商品贸易公司,农民,救济机构和外国政府通常使用这些预测。本文讨论了GLAM监测系统的操作组件和新发展,以及地球观测在全球农业监测中的未来作用。

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