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주행 및 교통 시뮬레이션 연계 분석을 통한 혼재교통류에서의 도로 위험 지점 식별Identification of Hazardous Road Spot in Mixed Traffic based on Integrated Analysis of Driving and Traffic Simulation

Other Titles
Identification of Hazardous Road Spot in Mixed Traffic based on Integrated Analysis of Driving and Traffic Simulation
Authors
진현석정아람조영오철
Issue Date
Feb-2025
Publisher
한국도로학회
Keywords
Mixed traffic flow; Driving simulation; Traffic simulation; Driving behavior; Pinpointing hazardous spot (PHS) technique
Citation
한국도로학회논문집, v.27, no.1, pp 117 - 128
Pages
12
Indexed
KCI
Journal Title
한국도로학회논문집
Volume
27
Number
1
Start Page
117
End Page
128
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/122327
DOI
10.7855/IJHE.2025.27.1.117
ISSN
1738-7159
2287-3678
Abstract
Until all vehicles are equipped with autonomous driving technology, there will inevitably be mixed traffic conditions that consist of autonomous vehicles (AVs) and manual vehicles (MVs). Interactions between AVs and MVs have a negative impact on traffic flow. Cloverleaf interchanges (ICs) have a high potential to cause traffic accidents owing to merging and diverging. Analyzing the driving safety of cloverleaf ICs in mixed traffic flows is an essential element of proactive traffic management to prevent accidents. This study proposes a comprehensive simulation approach that integrates driving simulation (DS) and traffic simulation (TS) to effectively analyze vehicle interactions between AVs and MVs. The purpose of this study is to identify hazardous road spots for a freeway cloverleaf IC by integrating DS and TS in mixed traffic flow. The driving behavior data of MVs collected through a DS were used to implement vehicle maneuvering based on an intelligent driver model in the TS. The driving behavior of the AVs was implemented using the VISSIM parameters of the AVs presented in the CoEXist project. Additionally, the market penetration rate of AVs, ranging from 10% to 90% in 10% increments, was considered in the analysis. Deceleration rate to avoid crashes was adopted as the evaluation indicator, and pinpointing hazardous spot technique was used to derive hazardous road spots for the cloverleaf IC. The most hazardous road spot was identified in the deceleration lane where greater speed changes were observed. Hazardous road spots moved downstream within the deceleration lane as traffic volumes increased based on level of service. The number of AVs decelerating stably increased as traffic increased, thereby improving the safety of the deceleration lane. These results can be used to determine the critical point of warning information provision for preventing accidents when introducing AVs.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF TRANSPORTATION AND LOGISTICS ENGINEERING > 1. Journal Articles

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ERICA 공학대학 (DEPARTMENT OF TRANSPORTATION AND LOGISTICS ENGINEERING)
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