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首页> 外文期刊>Biometrical Journal >Functional exploratory data analysis for high-resolution measurements of urban particulate matter
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Functional exploratory data analysis for high-resolution measurements of urban particulate matter

机译:功能性探索性数据分析,用于高分辨率测量城市颗粒物

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In this work we propose the use of functional data analysis (FDA) to deal with a very large dataset of atmospheric aerosol size distribution resolved in both space and time. Data come from a mobile measurement platform in the town of Perugia (Central Italy). An OPC (Optical Particle Counter) is integrated on a cabin of the Minimetr, an urban transportation system, that moves along a monorail on a line transect of the town. The OPC takes a sample of air every six seconds and counts the number of particles of urban aerosols with a diameter between 0.28 m and 10 m and classifies such particles into 21 size bins according to their diameter. Here, we adopt a 2D functional data representation for each of the 21 spatiotemporal series. In fact, space is unidimensional since it is measured as the distance on the monorail from the base station of the Minimetr. FDA allows for a reduction of the dimensionality of each dataset and accounts for the high space-time resolution of the data. Functional cluster analysis is then performed to search for similarities among the 21 size channels in terms of their spatiotemporal pattern. Results provide a good classification of the 21 size bins into a relatively small number of groups (between three and four) according to the season of the year. Groups including coarser particles have more similar patterns, while those including finer particles show a more different behavior according to the period of the year. Such features are consistent with the physics of atmospheric aerosol and the highlighted patterns provide a very useful ground for prospective model-based studies.
机译:在这项工作中,我们建议使用功能数据分析(FDA)处理在空间和时间上均已解析的非常大的大气气溶胶尺寸分布数据集。数据来自佩鲁贾镇(意大利中部)的移动测量平台。 OPC(光学粒子计数器)集成在Minimetr的客舱中,Minimetr是一种城市交通系统,可沿着城镇的直线横断面上的单轨铁路行驶。 OPC每六秒钟采样一次空气,并对直径为0.28 m至10 m的城市气溶胶颗粒数进行计数,并根据直径将其分类为21个大小的垃圾箱。在这里,我们为21个时空序列中的每一个采用2D功能数据表示。实际上,空间是一维的,因为它是单轨距Minimetr基站的距离。 FDA允许减少每个数据集的维数,并考虑到数据的高时空分辨率。然后进行功能聚类分析,以根据时空模式搜索21个大小通道之间的相似性。结果可以根据一年中的季节将21个大小的容器很好地分类为相对较少的组(三到四个之间)。包含较粗颗粒的组的模式更相似,而包含较细颗粒的组的行为根据一年中的不同而有所不同。这些特征与大气气溶胶的物理特征相一致,突出显示的模式为基于模型的前瞻性研究提供了非常有用的基础。

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