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Ensemble Learning for Spatial Interpolation of Soil Potassium Content Based on Environmental Information

机译:基于环境信息的土壤钾含量空间插值集成学习

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摘要

One important method to obtain the continuous surfaces of soil properties from point samples is spatial interpolation. In this paper, we propose a method that combines ensemble learning with ancillary environmental information for improved interpolation of soil properties (hereafter, EL-SP). First, we calculated the trend value for soil potassium contents at the Qinghai Lake region in China based on measured values. Then, based on soil types, geology types, land use types, and slope data, the remaining residual was simulated with the ensemble learning model. Next, the EL-SP method was applied to interpolate soil potassium contents at the study site. To evaluate the utility of the EL-SP method, we compared its performance with other interpolation methods including universal kriging, inverse distance weighting, ordinary kriging, and ordinary kriging combined geographic information. Results show that EL-SP had a lower mean absolute error and root mean square error than the data produced by the other models tested in this paper. Notably, the EL-SP maps can describe more locally detailed information and more accurate spatial patterns for soil potassium content than the other methods because of the combined use of different types of environmental information; these maps are capable of showing abrupt boundary information for soil potassium content. Furthermore, the EL-SP method not only reduces prediction errors, but it also compliments other environmental information, which makes the spatial interpolation of soil potassium content more reasonable and useful.
机译:从点样获得土壤特性连续表面的一种重要方法是空间插值。在本文中,我们提出了一种将集成学习与辅助环境信息相结合的方法,以改善土壤属性的插值(以下简称EL-SP)。首先,我们根据测量值计算了中国青海湖地区土壤钾含量的趋势值。然后,根据土壤类型,地质类型,土地利用类型和坡度数据,使用集成学习模型对剩余的残差进行模拟。接下来,采用EL-SP方法在研究地点内插土壤钾含量。为了评估EL-SP方法的效用,我们将其性能与其他插值方法(包括通用克里格法,反距离权重,普通克里格法和普通克里格法结合了地理信息)的性能进行了比较。结果表明,EL-SP的平均绝对误差和均方根误差均低于本文测试的其他模型产生的数据。值得注意的是,由于结合使用了不同类型的环境信息,与其他方法相比,EL-SP地图可以描述更多局部细节信息和更准确的土壤钾含量空间格局;这些图能够显示土壤钾含量的突然边界信息。此外,EL-SP方法不仅减少了预测误差,而且还补充了其他环境信息,这使得土壤钾含量的空间插值更加合理和有用。

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  • 页码 e0124383
  • 总页数 11
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