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Quantification of Uncertainty in Mathematical Models: The Statistical Relationship between Field and Laboratory pH Measurements

机译:数学模型中的不确定性量化:田野和实验室pH测量之间的统计关系

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The measurement of soil pH using a field portable test kit represents a fast and inexpensive method to assess pH. Field based pH methods have been used extensively for agricultural advisory services and soil survey and now for citizen soil science projects. In the absence of laboratory measurements, there is a practical need to model the laboratory pH as a function of the field pH to increase the density of data for soil research studies and Digital Soil Mapping. The accuracy and uncertainty in pH field measurements were investigated for soil samples from regional Victoria in Australia using both linear and sigmoidal models. For samples in water and CaCl_2 at 1:5 dilutions, sigmoidal models provided improved accuracy over the full range of field pH values in comparison to linear models (i.e., pH < 5 or pH > 9). The uncertainty in the field results was quantified by the 95% confidence interval (CI) and 95% prediction interval (PI) for the models, with 95% CI < 0.25 pH units and 95% PI = ±1.3 pH units, respectively. It was found that the Pearson criterion for robust regression analysis can be considered as an alternative to the orthodox least-squares modelling approach because it is more effective in addressing outliers in legacy data.
机译:使用现场便携式测试套件对土壤pH进行测量代表了一种评估pH的快速且廉价的方法。基于现场的pH方法已广泛用于农业咨询服务和土壤调查,现在已用于公民土壤科学项目。在没有实验室测量的情况下,实际需要根据田间pH值对实验室pH值进行建模,以增加用于土壤研究和数字土壤测绘的数据密度。使用线性和S形模型研究了澳大利亚维多利亚地区土壤样品的pH场测量的准确性和不确定性。与线性模型(即pH <5或pH> 9)相比,对于以1:5稀释的水和CaCl_2稀释的样品,乙状结肠模型在整个田间pH值范围内均提供了更高的准确性。田间结果的不确定性通过模型的95%置信区间(CI)和95%预测区间(PI)进行量化,分别为95%CI <0.25 pH单位和95%PI =±1.3 pH单位。已经发现,用于鲁棒回归分析的Pearson准则可以被认为是正统最小二乘建模方法的替代方法,因为它可以更有效地解决遗留数据中的异常值。

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  • 来源
    《Applied and environmental soil science》 |2017年第2017期|65-76|共12页
  • 作者单位

    School of Engineering, University of Melbourne, Parkville, VIC, Australia,Department of Economic Development, Jobs, Transport and Resources (DEDJTR), Parkville Centre, 32 Lincoln Square North, Parkville, VIC, Australia;

    Department of Economic Development, Jobs, Transport and Resources (DEDJTR), Bendigo Centre, Cnr Midland Hwy and Taylor Street, Epsom, VIC, Australia,Faculty of Science and Technology, Federation University, University Drive, Mount Helen, VIC, Australia;

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