|
[1]吕能超,王玉刚,周颖,等.道路交通安全分析与评价方法综述[J]. 中国公路学报, 2023, 36(4): 183-201.
[LYU N C, WANG Y G, ZHOU Y, et al. Review of road
traffic safety analysis and evaluation methods[J]. China
Journal of Highway and Transport, 2023, 36(4): 183
201.]
[2]刘雪,宋勇刚,王欣,等.基于互联网数据城市快速路地点安全分析方法[J]. 交通运输系统工程与信息,
2018, 18(5): 53-59. [LIU X, SONG Y G, WANG X, et al.
Location security analysis of urban expressway based on
internet data[J]. Journal of Transportation Systems
Engineering and Information Technology, 2018, 18(5):
53-59.]
[3]
朱顺应,蒋若曦,王红,等.机动车交通冲突技术研究综述[J]. 中国公路学报,2020, 33(2): 15-33. [ZHU S Y,
JIANG R X, WANG H, et al. Review of research on
traffic conflict techniques[J]. China Journal of Highway
and Transport, 2020, 33(2): 15-33.]
[4]
BARHOUMI O, ZAKI M H, TAHAR S. A formal
approach to road safety assessment using traffic conflict
techniques[J]. IEEE Open Journal of Vehicular
Technology, 2024, 5: 606-619.
[5]PAUL A B, GORE N, ARKATKAR S, et al. Traffic
conflict-based
safety
assessment
framework for
evaluating treatment effects at urban unsignalized
intersections: A case study from Surat, India[J]. Journal
of Transportation Engineering, Part A: Systems, 2025,
151(8): 05025004.
[6]
胡立伟,张瑞杰,赵雪亭,等.道路环形交叉口机动车冲突风险区识别模型研究[J].交通运输系统工程与信息, 2024, 24(1): 168-178. [HU L W, ZHANG R J,
ZHAO X T, et al. Roundabout motor vehicle conflict risk
identification
model[J]. Journal of Transportation
Systems Engineering and Information Technology, 2024,
24(1): 168-178.]
[7]HANG L, DUAN X, ZHANG M, et al. Research on the
safety characteristics of mixed traffic flow under different
penetration
scenarios
of
autonomous vehicles[J].
Tehnički Vjesnik, 2022, 29(5): 1609-1621.
[8]HE Y, XIA J. Comprehensive evaluation on traffic safety
of mixed traffic flow in a freeway merging area based on a
cloud model: From the perspective of traffic conflict[J].
Symmetry, 2025, 17(6): 855.
[9]
赵涛,张宁,王小超,等.基于图神经网络轨迹预测的合流区交通冲突预测方法[J].山东大学学报(工学版),
2024, 54(2): 36-46. [ZHAO T, ZHANG N, WANG X C,
et al. A traffic conflict prediction for method for merging
areas based on trajectory prediction with graph neural
network[J]. Journal of Shandong University (Engineering
Science), 2024, 54(2): 36-46.]
[10] ISLAM Z, ABDEL-ATY M. Traffic conflict prediction
using connected vehicle data[J]. Analytic Methods in
Accident Research, 2023, 39: 100275.
[11] OUYANG P, WU J, XU C, et al. Traffic safety analysis of
inter-tunnel weaving section with conflict prediction
models[J]. Journal of Transportation Safety and Security,
2022, 14(4): 630-654.
[12] 王晓翠, 张礼敬.通行车辆的激增对扬子江隧道交通安全的影响研究[J]. 公路,2017,62(8): 184-190.
[WANG X C, ZHANG L J. Research on the impact of
traffic surge on the traffic safety of the Yangtze river
tunnel[J]. Highway, 2017, 62(8): 184-190.]
[13] 薛锋, 胡萍,黄宇.基于组合模型的公路隧道交通安全评价[J]. 公路交通科技, 2021, 38(7): 85-95. [XUE F,
HU P, HUANG Y. Traffic safety evaluation of highway
tunnel based on combined model[J]. Highway and
Transportation Research and Development, 2021, 38(7):
85-95.]
[14] 刘志强,王涛.基于改进TOPSIS的驾驶行为实时安全性评估方法[J]. 重庆理工大学学报,2021,35(11): 58
66. [LIU Z Q, WANG T. Real-time safety assessment
method of driving behavior based on improved TOPSIS
[J]. Journal of Chongqing University of Technology,
2021, 35(11): 58-66.]
[15] 陈亚振, 林玉坤.高速公路改扩建作业区行车安全风险评价及临时安全防护体系研究[J].土木工程,2022,
11(8): 944-953. [CHEN Y Z, LIN Y K. Research on
traffic safety risk assessment and temporary safety
protection system in expressway reconstruction and
expansion operation area[J]. Hans Journal of Civil
Engineering, 2022, 11(8): 944-953.]
[16] 杜渐, 杨海益,李洋,等.基于可解释机器学习框架的高速公路安全风险及影响要素识别[J].交通信息与安全, 2023, 41(5): 24-34. [DU J, YANG H Y, LI Y, et al.
Identification of safety risk in freeway and impact factors
based on an interpretable machine learning framework
[J]. Transport Information and Safety, 2023, 41(5): 24
34.]
[17] 于翔海,白佃国,于光,等.基于XGBoost模型的城市道路实时交通事故风险预测研究[J].公路交通科技,
2023, 40(4): 237-247. [YU X H, BAI D G, YU G, et al.
Study on predicting real-time traffic accident risk of
urban road based on XGBoost model[J]. Highway and
Transportation Technology, 2023, 40(4): 237-247.]
[18] MILANéS V, SHLADOVER S E. Modeling cooperative
and autonomous adaptive cruise control dynamic
responses using experimental data[J]. Transportation
Research Part C: Emerging Technologies, 2014, 48: 285
300.
[19] TALAVERA E, DíAZ-ÁLVAREZ A, JIMéNEZ F, et al.
Impact on congestion and fuel consumption of a
cooperative adaptive cruise control system with lane
level position estimation[J]. Energies, 2018, 11(1): 194.
[20] BU F, TAN H-S, HUANG J. Proceedings of the 2010
American control conference, design and field testing of
a cooperative adaptive cruise control system[C].
Baltimore: IEEE, 2010.
[21] MUKHAMETZYANOV I. Specific character of objective
methods for determining weights of criteria in MCDM
problems: Entropy, CRITIC and SD[J]. Decision Making:
Applications in Management and Engineering, 2021, 4
(2): 76-105.
[22] 俞洪良,杨正涵,徐铨彪,等.基于DEMATEL-ISM的水利工程EPC项目价值增值机理研究[J].浙江大学学报(理学版), 2024, 51(1): 120-130. [YU H L, YANG Z H,
XU QB, et al. Research on value-added mechanism of
hydraulic engineering with EPC general contracting
mode based on DEMATEL-ISM[J]. Journal of Zhejiang
University (Science Edition), 2024, 51(1): 120-130.]
[23] 徐进, 刘妍伶,金勇,等.超大流量高速公路短净距交织区车辆运行特征与行车风险[J/OL].交通运输工程学报, (2025-09-02) [2026-02-27]. https://doi.org/
10.19818/j.cnki.1671-1637.2026.029. [XU J, LIU Y L,
JIN Y, et al. Vehicle operational characteristics and
driving risks in shortspacing weaving areas of ultra
high traffic volume expressways[J/OL]. Journal of
Traffic and Transportation Engineering, (2025-09-02)
[2026-02-27].
https://doi.org/10.19818/j.cnki.1671
1637.2026.029.]
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