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Digital Elevation Accuracy and Grid Cell Size: Effects on Estimated Terrain Attributes

机译:数字高程精度和网格像元大小:对估计的地形属性的影响

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摘要

Terrain attributes are commonly used to explain the spatial variability of agronomic, pedologic, and hydrologic variables. The terrain attributes studied here (elevation, slope, aspect, and curvature) are estimated readily from digital elevation models (DEMs), but questions remain about how the accuracy and sample spacing of the elevation data affect the estimated attributes. The main objective of this study was to quantify differences in each terrain attribute due to factors affecting DEM accuracy and grid cell size. Three data sources were compared: (i) real-time kinematic global positioning system (RTKGPS); (ii) satellite-differentially corrected global positioning system (DGPS); and (iii) U.S. Geological Survey (USGS) 30-m DEMs. The GPS data from three undulating agricultural fields in northeastern Colorado were interpolated onto 5-, 10-, 20-, and 30-m grid DEMs. The DGPS and USGS DEMs produced similar elevation differences relative to RTKGPS DEMs, but elevation differences in USGS DEMs were more spatially correlated. Estimates of curvature were highly sensitive to DEM differences and the sensitivity of slope, aspect, and curvature estimates decreased as grid cell size increased. The impacts of DEM accuracy and grid cell size were investigated using correlations between wheat (Triticum aestivum L.) grain yields and estimated terrain attributes. The highest correlation coefficients were obtained using RTKGPS data, and decreasing the sample spacing or grid cell size below 30 m did not consistently improve the correlations. These analyses on agricultural lands indicate the importance of accurate elevation data for detailed terrain analyses on grid cell sizes of 30 m or less.
机译:地形属性通常用于解释农学变量,土壤学变量和水文变量的空间 变异性。 此处研究的地形属性(海拔,坡度,坡向, 和曲率),但是仍然存在有关高程数据的精度和 样本间距如何影响估算属性的问题。< sup> 这项研究的主要目的是量化由于影响DEM精度 和网格像元大小的因素而导致的每个地形属性中的差异 。比较了三个数据源:(i)实时 运动学全球定位系统(RTKGPS); (ii)卫星差分 校正的全球定位系统(DGPS); (iii)美国地质调查局(USGS)30米DEM。将来自科罗拉多州东北部三个起伏的 农业领域的GPS数据内插 到5、10、20和30 m的网格DEM中。 DGPS和USGS DEMs 相对于RTKGPS DEMs产生了相似的高度差,但USGS DEMs的高度差在空间上具有更大的相关性。 曲率估计值是对DEM差异 高度敏感,并且坡度,纵横比和曲率估计值 的敏感性随网格单元大小的增加而降低。利用 小麦(Triticum aestivum L.)小麦籽粒产量与地形 属性之间的相关性,研究了DEM精度 和网格单元尺寸的影响。使用RTKGPS数据获得最高的相关系数,而将样本间距或网格 像元大小减小到30 m以下并不能持续改善相关性。 这些对农业用地的分析表明, 对于30 m或更小的网格单元大小的详细地形分析,准确的高程数据很重要。

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  • 来源
    《Soil Science Society of America Journal》 |2007年第4期|1371-1380|共10页
  • 作者单位

    USDA-ARS, Agricultural Systems Research Unit, 2150 Centre Ave., Bldg. D, Suite 200, Fort Collins, CO 80526,Dep. of Forest Rangeland, and Watershed Stewardship, Colorado State Univ., Fort Collins, CO 80523;

    Dep. of Civil Engineering, Colorado State Univ., Fort Collins, CO 80523,Dep. of Forest Rangeland, and Watershed Stewardship, Colorado State Univ., Fort Collins, CO 80523;

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