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Crash- and Simulation-Based Safety Performance Evaluation of Freeway Rest Areaopen access

Authors
Kim HyeonseoKwon KyeongjooPark NuriPark JuneyoungAbdel-Aty Mohamed
Issue Date
May-2021
Publisher
MDPI Open Access Publishing
Keywords
Crash modification factor; Rest area; Safety performance; Surrogate safety; Traffic simulation
Citation
Sustainability, v.13, no.9, pp 1 - 14
Pages
14
Indexed
SCIE
SSCI
SCOPUS
Journal Title
Sustainability
Volume
13
Number
9
Start Page
1
End Page
14
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/110455
DOI
10.3390/su13094963
ISSN
2071-1050
2071-1050
Abstract
The main objective of this study was to evaluate the safety effects caused by altering the lengths of deceleration and acceleration lanes at rest areas on expressways in Korea. Although general conclusions can be found through crash-based safety analysis, to examine more specific optimal conditions considering various traffic conditions, this study proposes a novel framework to explore and evaluate crash-based and simulation-based safety performances. For this purpose, the safety performance function (SPF) and crash modification factor (CMF) were developed to reflect real-world safety impacts. To consider nonlinear trends of the parameters, nonlinearizing link functions were introduced into the analysis. Two types of simulation analyses were conducted to (1) find the combination of surrogate safety measures (SSMs) that best fit with the crash-based safety performance results and (2) determine the optimal lengths of deceleration lane and acceleration lanes for different traffic conditions. The results showed that the best length of deceleration lane of a rest area is between 240 and 260 m, depending on the traffic conditions. The results also indicated that the optimal length of acceleration lane of a rest area is between 385 and 400 m, depending on the traffic parameters. The findings of this study could be used to determine the safety solutions with a micro-traffic simulator.
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Park, June young
ERICA 공학대학 (DEPARTMENT OF TRANSPORTATION AND LOGISTICS ENGINEERING)
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