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一项通过无监督机器学习方法确定新冠病毒-19风险水平的比较研究。

A comparative study for determining Covid-19 risk levels by unsupervised machine learning methods.

作者信息

Fidan Huseyin, Erkan Yuksel Mehmet

机构信息

Department of Industrial Engineering, Faculty of Engineering-Architecture, Burdur Mehmet Akif Ersoy University, Burdur, Turkey.

Department of Computer Engineering, Faculty of Engineering-Architecture, Burdur Mehmet Akif Ersoy University, Burdur, Turkey.

出版信息

Expert Syst Appl. 2022 Mar 15;190:116243. doi: 10.1016/j.eswa.2021.116243. Epub 2021 Nov 19.

Abstract

The restrictions have been preferred by governments to reduce the spread of Covid-19 and to protect people's health according to regional risk levels. The risk levels of locations are determined due to threshold values ​​based on the number of cases per 100,000 people without environmental variables. The purpose of our study is to apply unsupervised machine learning techniques to determine the cities with similar risk levels by using the number of cases and environmental parameters. Hierarchical, partitional, soft, and gray relational clustering algorithms were applied to different datasets created with weekly the number of cases, population densities, average ages, and air pollution levels. Comparisons of the clustering algorithms were performed by using internal validation indexes, and the most successful method was identified. In the study, it was revealed that the most successful method in clustering based on the number of cases is Gray Relational Clustering. The results show that using the environmental variables for restrictions requires more clusters than 4 for healthier decisions and Gray Relational Clustering gives stable results, unlike other algorithms.

摘要

根据地区风险水平,政府更倾向于采取限制措施以减少新冠病毒的传播并保护人们的健康。地点的风险水平是根据每10万人病例数的阈值确定的,未考虑环境变量。我们研究的目的是应用无监督机器学习技术,通过使用病例数和环境参数来确定风险水平相似的城市。将层次聚类、划分聚类、软聚类和灰色关联聚类算法应用于由每周病例数、人口密度、平均年龄和空气污染水平创建的不同数据集。通过使用内部验证指标对聚类算法进行比较,并确定最成功的方法。在该研究中,结果表明基于病例数进行聚类时最成功的方法是灰色关联聚类。结果显示,为了做出更健康的决策,在制定限制措施时使用环境变量需要的聚类数超过4个,并且与其他算法不同,灰色关联聚类给出的结果较为稳定。

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