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An Adaptive Method of Non-stationary Variogram Modeling for DEM Error Surface Simulation

机译:DEM误差表面仿真的自适应非平稳波动图建模方法

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摘要

Geostatistical characterization of local DEM error is usually based on the assumption of a stationary variogram model which requires the mean and variance to be finite and constant in the area under investigation. However, in practice this assumption is appropriate only in a restricted spatial location, where the local experimental variograms vary slowly. Therefore, an adaptive method is developed in this article to model non-stationary variograms, for which the estimator and the indicator for characterization of spatial variation are a Voronoi map and the standard deviation of mean values displayed in the Voronoi map, respectively. For the adaptive method, the global domain is divided into different meshes with various sizes according to the variability of local variograms. The adaptive method of non-stationary variogram modeling is applied to simulating error surfaces of a LiDAR derived DEM located in Sichuan province, China. Results indicate that the locally adaptive variogram model is more accurate than the global one for capturing the characterization of spatial variation in DEM errors. The adaptive model can be considered as an alternative approach to modeling non-stationary variograms for DEM error surface simulation.
机译:局部DEM误差的地统计学特征通常基于静态变异函数模型的假设,该模型要求在调查区域中均值和方差是有限且恒定的。但是,实际上,这种假设仅适用于局部实验变异函数变化缓慢的受限空间位置。因此,本文开发了一种自适应方法来对非平稳变异函数进行建模,其特征在于,用于表征空间变化的估计量和指标分别为Voronoi图和Voronoi图中显示的平均值的标准差。对于自适应方法,根据局部变异函数的可变性,将全局域划分为具有各种大小的不同网格。将非平稳变异函数建模的自适应方法用于模拟位于中国四川省的LiDAR衍生DEM的误差面。结果表明,局部自适应变异函数模型比全局模型更准确,可以捕获DEM误差的空间变化特征。可以将自适应模型视为对DEM误差表面模拟的非平稳变异函数建模的替代方法。

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