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Effect of Uncertainty on Source Contributions from the Positive Matrix Factorization Model for a Source Apportionment Study

机译:来自源分配研究的正矩阵分解模型的不确定性对源贡献的影响

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摘要

Uncertainty estimation plays an important role in source apportionment models such as the positive matrix factorization (PMF) model. In this study, synthetic datasets were generated and analyzed using PMF with specified uncertainties at different levels to investigate the impact of uncertainty inputs on the results of PMF model, as well as the benefits and risks of emphasizing on certain species. The results showed that: (1) uncertainties for the PMF model should be estimated based on characteristics of the dataset being analyzed; (2) emphasizing on correct tracers will improved model performance; and (3) emphasizing on unsuitable tracers may lead to disruptive consequences that might not be captured by the Q metric. Tests were also performed on collected ambient PM2.5 samples and similar conclusions were drawn: emphasizing on correct tracers was shown to improve the separation of important source categories from mixed sources. When emphasizing on incorrect tracers, a counterfeit factor of Fe industrial source was extracted, which are inconsistent with field observations. Results from this study provide insights on how uncertainties should be estimated for the PMF model.
机译:不确定性估计在诸如正矩阵分解(PMF)模型之类的源分配模型中起着重要作用。在这项研究中,使用具有特定不确定性的PMF在不同级别上生成和分析了合成数据集,以调查不确定性输入对PMF模型结果的影响以及强调某些物种的收益和风险。结果表明:(1)应根据所分析数据集的特征估计PMF模型的不确定性; (2)强调正确的追踪器将改善模型性能; (3)强调不合适的示踪剂可能会导致破坏性后果,而Q指标可能无法捕获这些破坏性后果。还对收集到的周围PM2.5样品进行了测试,得出了类似的结论:强调正确的示踪剂可以改善重要来源类别与混合来源的分离。在强调不正确的示踪剂时,提取了伪造的铁工业来源因素,这与现场观察结果不一致。这项研究的结果为如何估计PMF模型的不确定性提供了见解。

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