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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Understanding the temporal behavior of crops using Sentinel-1 and Sentinel-2-like data for agricultural applications
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Understanding the temporal behavior of crops using Sentinel-1 and Sentinel-2-like data for agricultural applications

机译:了解使用Sentinel-1和Sentinel-2类似的农业应用程序的时间行为进行农业应用

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Abstract Crop monitoring information is essential for food security and to improve our understanding of the role of agriculture on climate change, among others. Remotely sensing optical and radar data can help to map crop types and to estimate biophysical parameters, especially with the availability of an unprecedented amount of free Sentinel data within the Copernicus programme. These datasets, whose continuity is guaranteed up to decades, offer a unique opportunity to monitor crops systematically every 5 to 10days. Before developing operational monitoring methods, it is important to understand the temporal variations of the remote sensing signal of different crop types in a given region. In this study, we analyse the temporal trajectory of remote sensing data for a variety of winter and summer crops that are widely cultivated in the world (wheat, rapeseed, maize, soybean and sunflower). The test region is in southwest France, where Sentinel-1 data have been acquired since 2014. Because Sentinel-2 data were not available for this study, optical satellites similar to Sentinel-2 are used, mainly to derive NDVI, for a comparison between the temporal behaviors with radar data. The SAR backscatter and NDVI temporal profiles of fields with varied management practices and environmental conditions are interpreted physically. Key findings from this analysis, leading to possible applications of Sentinel-1 data, with or without the conjunction of Sentinel-2, are then described. This study points out the interest of SAR data and particularly the VH/VV ratio, which is poorly documented in previous studies. Highlights ? Time series of Sentinel-1 data are analysed for various crop types. ? Sentinel-1 backscatter temporal variations are compared with optical-derived NDVI. ? SAR backscatter and NDVI may be complementary for agricultural applications. ? VH/VV ratio, rarely documented so far, is notably suitable for crop applications. ]]>
机译:<![cdata [ 抽象 作物监测信息对于粮食安全至关重要,提高我们对农业作用对气候变化的理解,其中其他。远程传感光学和雷达数据可以帮助地映射作物类型和估计生物物理参数,特别是在哥白尼程序中的未识别数量的免费哨兵数据的可用性。这些数据集其连续性最多可保证,最多几十年来提供一个独特的机会,每5到10 天数系统地监控作物。在开发操作监控方法之前,重要的是要理解给定区域中不同作物类型的遥感信号的时间变化。在这项研究中,我们分析了各种冬季和夏季作物的遥感数据的时间轨迹(小麦,油菜籽,玉米,大豆和向日葵)。测试区位于法国西南部,自2014年以来已经获得了Sentinel-1数据。由于Sentinel-2数据无法用于本研究,因此使用类似于Sentinel-2的光学卫星,主要用于导出NDVI,以便比较具有雷达数据的时间行为。具有各种管理实践和环境条件的字段的SAR反向散射和NDVI时间概况在物理上解释。然后,然后描述来自该分析的主要发现,然后将哨落-1数据的可能应用,有或没有哨声-2的结合的应用。本研究指出了SAR数据的兴趣,特别是VH / VV比率,在先前的研究中记录不佳。 突出显示 ?< / ce:标签> 为各种作物类型分析了Sentinel-1数据的时间序列。 与光学派生的NDVI相比,Sentinel-1反向散射时间变化。 SAR BackSmatter和NDVI可能是互补的农业应用。 VH / VV比率,迄今为止很少记录,特别适用于裁剪应用。 ]]>

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