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与连续碰撞严重程度相关的影响因素:一种两级逻辑回归建模方法。

Influential Factors Associated with Consecutive Crash Severity: A Two-Level Logistic Modeling Approach.

机构信息

Academy for Advanced Interdisciplinary Studies, Southern University of Science and Technology, Shenzhen 518000, China.

Department of Statistics and Data Science, Southern University of Science and Technology, Shenzhen 518000, China.

出版信息

Int J Environ Res Public Health. 2020 Aug 4;17(15):5623. doi: 10.3390/ijerph17155623.

Abstract

A consecutive crash series is composed by a primary crash and one or more subsequent secondary crashes that occur immediately within a certain distance. The crash mechanism of a consecutive crash series is distinctive, as it is different from common primary and secondary crashes mainly caused by queuing effects and chain-reaction crashes that involve multiple collisions in one crash. It commonly affects a large area of road space and possibly causes congestions and significant delays in evacuation and clearance. This study identified the influential factors determining the severity of primary and secondary crashes in a consecutive crash series. Basic, random-effects, random-parameters, and two-level binary logistic regression models were established based on crash data collected on the freeway network of Guizhou Province, China in 2018, of which 349 were identified as consecutive crashes. According to the model performance metrics, the two-level logistic model outperformed the other three models. On the crash level, double-vehicle primary crash had a negative association with the severity of secondary consecutive crashes, and the involvement of trucks in the secondary consecutive crash had a positive contribution to its crash severity. On a road segment level, speed limit, traffic volume, tunnel, and extreme weather conditions such as rainy and cloudy days had positive effects on consecutive crash severity, while the number of lanes was negatively associated with consecutive crash severity. Policy suggestions are made to alleviate the severity of consecutive crashes by reminding the drivers with real-time potential hazards of severe consecutive crashes and providing educative programs to specific groups of drivers.

摘要

连续碰撞系列由一次初始碰撞和一次或多次紧接着发生在一定距离内的后续二次碰撞组成。连续碰撞系列的碰撞机制具有独特性,与常见的主要由排队效应和涉及一次碰撞中多次碰撞的连锁反应碰撞引起的一般的初始和二次碰撞不同。它通常会影响较大的道路空间区域,并可能导致拥堵和疏散及清理的显著延迟。本研究确定了决定连续碰撞系列中初始和二次碰撞严重程度的影响因素。根据 2018 年在中国贵州省高速公路网收集的碰撞数据,建立了基本、随机效应、随机参数和两级二元逻辑回归模型,其中 349 个被确定为连续碰撞。根据模型性能指标,两级逻辑模型优于其他三个模型。在碰撞层面上,两车初始碰撞与二次连续碰撞的严重程度呈负相关,而在二次连续碰撞中涉及卡车对其碰撞严重程度有积极贡献。在路段层面上,限速、交通量、隧道以及雨天和多云等极端天气条件对连续碰撞的严重程度有积极影响,而车道数量与连续碰撞的严重程度呈负相关。通过提醒驾驶员实时注意严重连续碰撞的潜在危险,并为特定群体的驾驶员提供教育计划,提出缓解连续碰撞严重程度的政策建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b64d/7570167/12300c89ba7a/ijerph-17-05623-g001.jpg

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