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首页> 外文期刊>International Journal of Geographical Information Science >Uncovering the statistical and spatial characteristics of fine toposcale DEM error
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Uncovering the statistical and spatial characteristics of fine toposcale DEM error

机译:发现精细的地形尺度DEM误差的统计和空间特征

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The aim of our study was to characterize statistical and spatial details of the errors in a fine toposcale DEM derived by contour data. The fine toposcale DEMs are typically represented in a 5-50 m grid and used in the application scale 1:10000-1:50000. The errors were determined by using high-quality reference data covering the entire study area from an airborne laser scanner. The work was motivated because of the essential role played by the correct characterization of DEM error in error-propagation studies. The results showed that the spatial autocorrelation of the fine toposcale DEM error was the result of a complex combination of random and systematic-like components, and its appropriate modelling by geostatistical methods is problematic because of the small extent of the areas in which the assumption of stationarity is valid. In addition, describing the shape of the DEM error distribution was impossible with a single parameter of dispersion. This was due to a large number of outliers, which suggests that more robust descriptors of the error should be used in addition to conventional error statistics.
机译:我们研究的目的是表征由轮廓数据得出的精细地形尺度DEM中误差的统计和空间细节。精细的拓扑DEM通常以5-50 m的网格表示,并以1:10000-1:50000的应用比例使用。通过使用机载激光扫描仪覆盖整个研究区域的高质量参考数据来确定错误。这项工作的动机是由于在错误传播研究中正确表征DEM错误起着至关重要的作用。结果表明,精细的地形尺度DEM误差的空间自相关是随机和类系统分量的复杂组合的结果,并且由于地域假设的范围较小,因此用地统计方法进行适当的建模存在问题。平稳性是有效的。另外,用单个色散参数描述DEM误差分布的形状是不可能的。这是由于存在大量异常值,这表明除常规错误统计信息外,还应使用更健壮的错误描述符。

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