Analysis of Factors Affecting Road Transport Accidents of Hazardous Materials Based on PG-BN

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Zewen Li, Mengmeng Zhang
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引用次数: 0

Abstract

To analyze the factors affecting road accidents involving hazardous materials, the Bayesian network (BN) model was used to fit the accident data. However, considering the possible overfitting phenomenon of the BN model, the model was optimised by combining Pearson’s chi-squared test and Granger causality test (PG) methods. First, the data of hazardous materials accidents were preprocessed, and the index system of factors affecting hazardous materials road transport was constructed from five dimensions of “people, vehicles, hazmat, roads, and environment”; second, Pearson’s chi-squared test and the Granger causality test were used to screen the factors affecting hazardous materials road transport accidents and to determine the causal relationship between the factors; finally, the BN model was constructed with accident severity and accident processing time as target nodes, and the results were analyzed and validated. The results show that the overall relative error rate of the model is less than 10% and can be used to explore the risk factors of hazardous materials transport accidents; weather, visibility, lighting, intersection type, road condition, road type, driver condition, vehicle type, etc. are all important factors affecting the severity of hazardous materials transport accidents. The study can serve as a reference for the safety supervision and management of hazardous materials transport enterprises and industrial management departments.

基于 PG-BN 的危险品公路运输事故影响因素分析
为分析危险品道路交通事故的影响因素,采用贝叶斯网络(BN)模型对事故数据进行拟合。但考虑到贝叶斯网络模型可能存在过拟合现象,因此结合皮尔逊卡方检验和格兰杰因果检验(PG)方法对模型进行了优化。首先,对危化品事故数据进行预处理,从 "人、车、危化品、道路、环境 "五个维度构建危化品道路运输影响因素指标体系;其次,利用皮尔逊卡方检验和格兰杰因果检验筛选危化品道路运输事故影响因素,确定各因素之间的因果关系;最后,以事故严重程度和事故处理时间为目标节点构建 BN 模型,并对结果进行分析和验证。结果表明,该模型的总体相对误差小于 10%,可用于探讨危险品运输事故的风险因素;天气、能见度、照明、交叉口类型、路况、道路类型、驾驶员状况、车辆类型等都是影响危险品运输事故严重程度的重要因素。本研究可为危险品运输企业和行业管理部门的安全监督管理提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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