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Updating cover type maps using sequential indicator simulation

机译:使用顺序指示器模拟更新封面类型图

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Maximum posterior probability (MAP) maps of forest inventory (FI) cover type classes were produced from a maximum likelihood (ML) classified TM image and 5% (2%) systematic reference sampling of actual cover types for of nine 2×2 km study sites in New Brunswick, Canada. MAP cover type maps were obtained via sequential indicator simulation (SIS) using collocated indicator cokriging. A 5% reference sampling increased the coefficient of accuracy of MAP cover type maps by about 0.2 compared to the accuracy of the ML classified maps. MAP prediction errors were obtained for global and small area estimates of cover type extent. MAP-based cover type statistics of extent and precision were compatible with corresponding results for maximum likelihood bias-corrected estimates (MLE). Spatial autocorrelation of MAP prediction errors declined rapidly with distance and were near 0 for distances of more than 3-4 Landsat TM pixels. MAP cover type maps produced by SIS are attractive when both global and local estimates of precision of map-derived statistics are needed.
机译:从最大似然(ML)分类的TM图像和9个2×2 km研究的实际覆盖类型的5%(2%)系统参考样本中得出森林清单(FI)覆盖类型类别的最大后验概率(MAP)图加拿大新不伦瑞克省的网站。 MAP覆盖类型图是通过使用并置指示器协同克里金法的顺序指示器模拟(SIS)获得的。与ML分类地图的准确性相比,5%的参考采样使MAP覆盖类型地图的准确性系数提高了约0.2。对于覆盖类型范围的全局和小区域估计,获得了MAP预测误差。基于MAP的范围和精度覆盖类型统计与最大似然偏差校正估计(MLE)的相应结果兼容。 MAP预测误差的空间自相关随距离迅速下降,并且对于超过3-4个Landsat TM像素的距离,其接近于0。当需要对地图派生的统计数据的精度进行全局和局部估计时,由SIS生成的MAP覆盖类型地图将具有吸引力。

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