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The effects of rectification and Global Positioning System errors on satellite image-based estimates of forest area

机译:校正和全球定位系统错误对基于卫星图像的森林面积估计的影响

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Satellite image-based maps of forest attributes are of considerable interest and are used for multiple purposes such as international reporting by countries that have no national forest inventory and small area estimation for all countries. Construction of the maps typically entails, in part, rectifying the satellite images to a geographic coordinate system, observing ground plots whose coordinates are obtained from Global Positioning System (GPS) receivers that are calibrated to the same geographic coordinate system, and then matching ground plots to image pixels containing the centers of the ground plots. Errors in rectification and GPS coordinates cause observations of ground attributes to be associated with spectral values of incorrect pixels which, in turn, introduces classification errors into the resulting maps. The most important finding of the study is that for common magnitudes of rectification and GPS errors, as many as half the ground plots may be assigned to incorrect pixels. The effects on areal estimates obtained by aggregating class predictions for individual pixels are deviation of the estimates from their true values, erroneous confidence intervals, and incorrect inferences. Results are reported in detail for both probability-based (design-based) and model-based approaches to inference for proportion forest area using maps constructed from Landsat imagery, forest inventory plot observations and a logistic regression model.
机译:基于卫星图像的森林属性图备受关注,可用于多种目的,例如没有国家森林清单的国家进行国际报告以及对所有国家进行小面积估算。地图的构建通常需要在一定程度上将卫星图像校正为地理坐标系,观察其坐标是从全球定位系统(GPS)接收器获得的坐标已校准到相同地理坐标系的地图,然后匹配地图对包含地面图的中心的像素进行成像。校正和GPS坐标中的错误会导致对地面属性的观察与错误像素的光谱值相关联,进而将分类错误引入到生成的地图中。该研究最重要的发现是,对于常见的校正量和GPS误差,可能有多达一半的地面图被分配给不正确的像素。通过汇总各个像素的类别预测所获得的面积估计值的影响是估计值与其真实值,错误的置信区间和错误推断之间的偏差。使用Landsat影像,森林清查图观测和Logistic回归模型构建的地图,详细报告了基于概率(基于设计)和基于模型的森林比例推断方法的结果。

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