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An Overview of High Accuracy Surface Modeling of Soil Properties

机译:土壤性质高精度表面造型概述

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High accuracy surface modeling (HASM) of soil properties is regarded as an important topic for the fields of pedometrics and "digital soil". The HASM method, constructed by Yue et al., is a spatial interpolation technique based on the fundamental theorem of surfaces. In this paper, we will give an overview of high accuracy surface modeling of soil properties. Soil properties for the interpolation were measured on 150 samples of topsoil (0-20 cm) in a red soil region of Jiangxi Province, China. Predicted and measured values were compared using the mean error (ME), mean absolute error (MAE) and root mean square error (RMSE). First, HASM has more accuracy than the classical interpolator including kriging, inverse distance weighting (IDW) and splines. Second, in order to improve the calculation speed for HASM applied in soil interpolation, multigrid has been combined in HASM (HASM-MG). HASM-MG can be considered as an accurate method for interpolating soil properties on the premise of improving the calculation speed, and it advances the practicability of HASM applied in soil property interpolation. Third, modified HASM method based on the incorporation of ancillary variables was developed for improving interpolation of soil properties (HASM-SP). To evaluate the performance of HASM-SP, it was compared with ordinary kriging (OK), ordinary kriging combined geographical information (OK-Geo) and stratified kriging (SK). HASM-SP not only showed less MAEs and RMSEs, but also presented much more details due to the abrupt boundary from spatial variation of geographical information. Therefore, HASM can be considered not only as an alternative, accurate and high speed method for interpolating soil properties, but also can make the map more consistent with the true geographical information.
机译:土壤性质的高精度表面建模(HASM)被认为是稻草钻和“数字土壤”领域的重要课题。由yue等人构成的HASM方法是基于表面基本定理的空间插值技术。在本文中,我们将概述土壤性质的高精度表面建模。在中国江西省红土地区的150个籽油(0-20厘米)上测量了内插的土壤性质。使用平均误差(ME),平均绝对误差(MAE)和均方根误差(RMSE)进行比较预测和测量值。首先,HASM比经典内插器更精确,包括Kriging,逆距离加权(IDW)和样条曲线。其次,为了改善渣打渣的计算速度,在土壤插值中施用,多档已在哈姆(HASM-MG)中组合。 HASM-MG可以被认为是在提高计算速度的前提下的内插土地性能的准确方法,并且它推动了哈姆的实用性在土壤属性插值中应用。第三,开发了基于辅助变量的改进的HASM方法,用于改善土壤性质(HASM-SP)的内插。为了评估HASM-SP的性能,将其与普通Kriging(OK),普通Kriging组合地理信息(OK-Geo)和分层克里格(SK)进行比较。 HASM-SP不仅展示了较少的MAE和RMSE,而且由于地理信息的空间变化突然边界,也提出了更多细节。因此,哈姆可以认为不仅是用于内插土壤属性的替代,准确和高速的方法,而且还可以使地图更符合真正的地理信息。

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