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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Horizontal resolution and data density effects on remotely sensed LIDAR-based DEM.
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Horizontal resolution and data density effects on remotely sensed LIDAR-based DEM.

机译:水平分辨率和数据密度对基于遥感的基于LIDAR的DEM的影响。

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Terrain analysis of digital elevation models (DEM) has become an important technique to assess landscape and watershed scale hydrologic and pedologic processes and the spatial variability of soil and ecologic properties. Light detecting and ranging (LIDAR) elevation data sets provide the flexibility needed to produce multiple horizontal resolutions of DEM from the same data source. A series of 61 LIDAR tiles (100 ha) were collected from the North Carolina Flood Mapping Program covering the spatial extent of the Hofmann Forest in the Lower Coastal Plain of Eastern North Carolina. The LIDAR data set was reduced to 50%, 25%, 10%, 5%, and 1% of the original density. We created 5-, 10-, and 30-m DEM with 0.1 m vertical precision for each density level and used paired t-test to determine if the true mean of their differences were equal to zero. Differences indicated that for the 30-m DEM, LIDAR data sets could be reduced to 10% of their original data density without statistically altering the produced DEM. However, the 10-m DEM could only be reduced to 25% of the original data set before statistically altering the DEM. Data reduction was more limited for the 5-m DEM with possible reduction only to 50% of their original density without producing statistically different DEM. Our evaluation provides some indication as to the minimum required LIDAR data density to produce a DEM of a given horizontal resolution. However, evaluation of additional horizontal resolutions and additional density reduction is required to provide a clearer understanding of the effect of LIDAR data density..
机译:数字高程模型(DEM)的地形分析已成为评估景观和流域尺度水文和生态过程以及土壤和生态特性的空间变异性的重要技术。光检测和测距(LIDAR)高程数据集提供了从同一数据源产生DEM的多个水平分辨率所需的灵活性。从北卡罗莱纳州洪水测绘计划中收集了一系列61个LIDAR瓷砖(100公顷),覆盖了北卡罗莱纳州东部沿海低地霍夫曼森林的空间范围。 LIDAR数据集减少到原始密度的50%,25%,10%,5%和1%。我们为每个密度水平创建了垂直精度为0.1 m的5、10和30 m DEM,并使用配对t检验确定它们差异的真实均值是否等于零。差异表明,对于30米长的DEM,LIDAR数据集可以减少到其原始数据密度的10%,而无需在统计上更改生成的DEM。但是,在统计上更改DEM之前,只能将10米DEM减少到原始数据集的25%。 5-m DEM的数据减少更为有限,可能仅减少到其原始密度的50%,而不会产生统计学上不同的DEM。我们的评估提供了有关产生给定水平分辨率的DEM所需的最低LIDAR数据密度的一些指示。但是,需要对附加的水平分辨率和附加的密度降低进行评估,以更清楚地了解LIDAR数据密度的影响。

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