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Addressing Challenges for Mapping Irrigated Fields in Subhumid Temperate Regions by Integrating Remote Sensing and Hydroclimatic Data

机译:通过集成遥感和水文气候数据来应对在亚湿温带地区绘制灌溉田地的挑战

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High-resolution mapping of irrigated fields is needed to better estimate water and nutrient fluxes in the landscape, food production, and local to regional climate. However, this remains a challenge in humid to subhumid regions, where irrigation has been expanding into what was largely rainfed agriculture due to trends in climate, crop prices, technologies and practices. One such region is southwestern Michigan, USA, where groundwater is the main source of irrigation water for row crops (primarily corn and soybeans). Remote sensing of irrigated areas can be difficult in these regions as rainfed areas have similar characteristics. We present methods to address this challenge and enhance the contrast between neighboring rainfed and irrigated areas, including weather-sensitive scene selection, applying recently developed composite indices and calculating spatial anomalies. We create annual, 30m-resolution maps of irrigated corn and soybeans for southwestern Michigan from 2001 to 2016 using a machine learning method (random forest). The irrigation maps reasonably capture the spatial and temporal pattern of irrigation, with accuracies that exceed available products. Analysis of the irrigation maps showed that the irrigated area in southwestern Michigan tripled in the last 16 years. We also discuss the remaining challenges for irrigation mapping in humid to subhumid areas.
机译:需要对灌溉田进行高分辨率制图,以便更好地估算景观,粮食生产以及局部到区域气候中的水和养分通量。然而,这在潮湿至半湿润地区仍然是一个挑战,由于气候,作物价格,技术和实践的趋势,灌溉已扩展到主要为雨养农业。这样的地区之一是美国密歇根州西南部,那里的地下水是大田作物(主要是玉米和大豆)灌溉水的主要来源。在这些地区,由于雨养地区具有相似的特征,因此很难对灌溉地区进行遥感。我们提出了解决这一挑战的方法,并增强了邻近的雨养区和灌溉区之间的对比度,包括对天气敏感的场景选择,应用最近开发的综合指标和计算空间异常。我们使用机器学习方法(随机森林)创建了密歇根州西南部2001年至2016年每年30m分辨率的灌溉玉米和大豆的地图。灌溉图合理地捕获了灌溉的空间和时间模式,其准确性超过了现有产品。对灌溉图的分析表明,在过去的16年中,密歇根州西南部的灌溉面积增加了两倍。我们还将讨论在潮湿至半湿润地区进行灌溉制图所面临的挑战。

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