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Combined mapping of soil properties using a multi-scale tree-structured spatial model

机译:使用多尺度树结构空间模型的土壤特性组合映射

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Accurate maps of various key soil properties on fine spatial resolutions play an important role in precision modeling of agricultural systems. Recent development of alternatives to soil coring enables us to collect multiple sources of data, but data quality and spatial resolutions may differ greatly from one source to another. In this article, we use a multi-scale model for combining all data sources, despite varying resolutions and accuracies, to produce soil maps. We demonstrate that the method gives accurate results via computer simulations. Using the multi-scale method, we combine soil coring, penetrometer, and topographic data to map the depth-to-till on a 10-m resolution in an Arlington, Wisconsin field, and combine soil coring and soil electrical conductivity measurements to map field capacity on a 20-m resolution in a Waunakee, Wisconsin field. The proposed mapping technique has several advantages: (1) it is computationally fast and hence is well suited for landscape modeling-, (2) it provides a means to combine more than two sources of data; and (3) it provides a way to accommodate prior knowledge of spatial dependencies associated with various data sources
机译:在精细的空间分辨率下,各种关键土壤特性的精确地图在农业系统的精确建模中起着重要作用。土壤取芯替代方法的最新发展使我们能够收集多种数据来源,但数据质量和空间分辨率可能因一种来源而异。在本文中,我们使用多尺度模型来组合所有数据源,尽管分辨率和精度有所不同,但仍可以生成土壤图。我们证明该方法可以通过计算机仿真给出准确的结果。使用多尺度方法,我们结合了土壤取芯,透孔计和地形数据,以在威斯康星州阿灵顿的田野中以10 m分辨率绘制了耕层深度,并结合了土壤取芯和土壤电导率测量以绘制田野在威斯康星州Waunakee油田以20米的分辨率进行生产。所提出的映射技术具有以下优点:(1)计算速度快,因此非常适合景观建模-(2)它提供了一种组合两个以上数据源的方法; (3)它提供了一种方法来适应与各种数据源相关的空间相关性的先验知识

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