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In-situ recommendation of alternative soil samples during field sampling based on environmental similarity

机译:基于环境相似性的现场采样期间,原位建议替代土壤样品

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摘要

Field sampling is an essential step for digital soil mapping and various sampling strategies have been designed for achieving desirable mapping results. Some unpredictable complex circumstances in the field, however, often prevent some samples from being collected based on the pre-designed sampling strategies. Such circumstances include inaccessibility of some locations, change of land surface types, and heavily-disturbed soil at some locations, among others. This may result in the missing of some essential samples, which could impact the quality of digital soil mapping. Previous studies have attempted to design alternative samples for the selected ones beforehand to address this issue. It cannot solve the problem completely as those pre-designed alternative samples could also be inaccessible. In this paper, we propose a dynamic method to recommend alternative samples for those unavailable samples in the field. The identification of alternative samples is based on the environmental similarity between an unavailable soil sample and its alternative candidates, as well as the spatial accessibility of these candidates. For the convenience of fieldwork, the proposed method was implemented to be a mobile application on the Android platform. A simulated soil sampling study in Xuancheng county, Anhui province of China was used to evaluate its performance. From a sample set for the study are, 30 samples were assumed to be inaccessible. For each of them, an alternative soil sample from the set was recommended using the proposed method. A deviation analysis of silt and sand content at the depth of 20 ~ 40 cm between the soil samples and their alternatives shows that the deviation on silt content is less than 20% for half of the soil samples. A larger deviation on sand content might be attribute to the limited alternative candidates in this virtual experiment. In a second experiment, we randomly selected a number of existing soil samples and replaced them with their corresponding alternative soil samples. This created 1000 hybrid sample sets. Each hybrid sample set was then used for digital soil mapping with iPSM. An evaluation using 59 independent soil samples indicated that the RMSE and MAE with the hybrid sample sets were close to that with the original sample set. The proposed method proved to be able to recommend effective alternative samples for those unavailable samples in the field.
机译:场采样是数字土壤映射的重要步骤,并且设计了各种采样策略,用于实现所需的绘图结果。然而,该领域的一些不可预测的复杂情况通常会根据预先设计的采样策略来收集一些样本。这种情况包括某些地点,土地表面类型的变化以及某些位置的严重干扰土壤的情况。这可能导致一些必不可少的样本缺失,这可能会影响数字土壤映射的质量。以前的研究已经开始预先为所选的替代样本设计以解决这个问题。它无法完全解决问题,因为那些预先设计的替代样本也可能无法访问。在本文中,我们提出了一种动态方法,为该领域的那些不可用样本推荐替代样本。替代样品的识别基于不可用的土壤样品和其替代候选者之间的环境相似性,以及这些候选者的空间可访问性。为了便于实地性,该方法是在Android平台上的移动应用程序。安徽省申城县模拟土壤采样研究习惯于评估其表现。从用于研究的样本是,假设30个样品无法访问。对于它们中的每一个,建议使用该组的替代土壤样品使用该方法。淤泥和砂含量在土壤样品和其替代方案深度的深度和砂含量的偏差分析表明,淤泥含量的偏差小于20%的土壤样品。在该虚拟实验中的有限替代候选方面,砂内容的较大偏差可能是属性。在第二种实验中,我们随机选择了许多现有的土壤样品,并用相应的替代土壤样品替换它们。这创建了1000个混合样本集。然后将每个混合样品组用于IPSM的数字土壤映射。使用59个独立土壤样品的评估表明,具有混合样品集的RMSE和MAE与原始样品集接近该。所提出的方法证明能够为该领域的那些不可用的样本推荐有效的替代样本。

著录项

  • 来源
    《Earth Science Informatics》 |2020年第1期|共15页
  • 作者单位

    Nanjing Normal Univ Key Lab Virtual Geog Environm Minist Educ Nanjing Peoples R China;

    Nanjing Normal Univ Key Lab Virtual Geog Environm Minist Educ Nanjing Peoples R China;

    Jiangsu Ctr Collaborat Innovat Geog Informat Reso Applict Nanjing Jiangsu Peoples R China;

    Nanjing Normal Univ Key Lab Virtual Geog Environm Minist Educ Nanjing Peoples R China;

    Kean Univ Sch Environm Sustainabil Sciences 1000 Morris Ave Union NJ 07083 USA;

    Nanjing Normal Univ Key Lab Virtual Geog Environm Minist Educ Nanjing Peoples R China;

    Inst Geog Sciences Chinese Acad Sciences State Key Lab Resources Environm Informat Syst Nat Resources Res Beijing Beijing Peoples R China;

    Nanjing Normal Univ Key Lab Virtual Geog Environm Minist Educ Nanjing Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Soil sampling; Alternative soil samples; Environmental similarity; Accessibility; Android; Mobile computing;

    机译:土壤采样;替代土壤样本;环境相似;可访问性;Android;移动计算;

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