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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Extracting smallholder cropped area in Tigray, Ethiopia with wall-to-wall sub-meter WorldView and moderate resolution Landsat 8 imagery
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Extracting smallholder cropped area in Tigray, Ethiopia with wall-to-wall sub-meter WorldView and moderate resolution Landsat 8 imagery

机译:提取埃塞俄比亚的Tegray中的小农裁剪区域,墙壁次仪表世界观,适度分辨率Landsat 8图像

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AbstractVery high resolution (VHR) satellite data is experiencing rapid annual growth, producing petabytes of remotely sensed data per year. The WorldView constellation, operated by DigitalGlobe, images over 1.2billionkm2annually at <2m spatial resolution. Due to computation, data cost, and methodological concerns, VHR satellite data has mainly been used to produce needed geospatial information for site-specific phenomena. This project produced a VHR spatiotemporally explicit wall-to-wall cropland area map for the rainfed residential cropland mosaic of the Tigray Region, Ethiopia, which is comprised mostly of smallholder farms. Moderate resolution satellite data do not have adequate spatial resolution to capture the total area occupied by smallholder farms, i.e., farms with agricultural fields of ≤45×45m in dimension. In order to accurately map smallholder cropped area over a large region, hundreds of VHR images spanning two or more years are needed. Sub-meter WorldView-1 and WorldView-2 segmentation results were combined with median phenology amplitude from Landsat 8 data to map cropped area. Over 2700 VHR WorldView-1, -2 data were obtained from the U.S. National Geospatial-Intelligence Agency (NGA) via the NextView license agreement and were processed from raw imagery to produce a smallholder crop map in ~1week using a semi-automated method with the large computing capacity of the Advanced Data Analytics Platform. We estimated cropped area in Tigray to be 46% with a commission error of 5%±10% and omission error of 15%±12%. This methodology is extensible to other regions with similar vegetation texture and can easily be expanded to run on much
机译:<![cdata [ 抽象 非常高分辨率(VHR)卫星数据正在经历快速的年增长率,每年生产幽默感应数据的PETABYTES。 WorldView星座由DigitalGlobe操作,超过1.2billionkm 2 每年在<2m空间分辨率下。由于计算,数据成本和方法论问题,VHR卫星数据主要用于为现场特定现象产生所需的地理空间信息。该项目为埃塞俄比亚的Tigray地区的雨水地区的雨水住宅农田马赛克制作了VHR时尚般的墙壁田间地图。适度分辨率卫星数据没有足够的空间分辨率,以捕获小农农场占用的总面积,即农产品≤45×45m的农场。为了准确地映射在大区域上的小型效果区域,需要跨越两年或更长时间的数百个VHR图像。次仪表世界观-1和WorldView-2分段结果与来自Landsat 8数据的中位候选幅度与映射裁剪区域相结合。通过NextView许可协议从美国国家地理空间 - 智能局(NGA)获得超过2700 vhr WorldView-1,从原始图像处理,并使用半自动方法在〜1week中生产小型录像地图高级数据分析平台的大计算能力。我们估计TEGRAIN中的裁剪区域为46%,佣金误差为5%±10%,省略误差为15%±12%。该方法可与具有相似植被纹理的其他地区可扩展,并且很容易扩展以延长

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