|
[1]孙静怡,沈俊江,刘拥华,等.城市快速路可变限速策略[J]. 公路交通科技,2012, 29(11): 98-103. [SUN J Y,
SHEN J J, LIU Y H, et al. Variable speed limits strategy
of urban expressway[J]. Journal of Highway and
Transportation Research and Development, 2012, 29
(11): 98-103.]
[2]田江磊,李博,彭瑾晗,等.高速公路主线拥堵区域可变限速控制方法[J].公路,2025,70(8): 282-293. [TIAN
J L, LI B, PENG J H, et al. Variable speed limit control
method for congested areas on freeway mainline[J].
Highway, 2025, 70(8): 282-293.]
[3]
朱健,丁鹏程.非常发性瓶颈区可变限速控制方法[J].
交通科技与经济, 2020, 22(1): 38-43, 58. [ZHU J,
DING P C. Variable speed limit control method fornon
recurrent bottleneck zone[J]. Technology and Economy in
Areas of Communications, 2020, 22(1): 38-43, 58.]
[4]
邓炜,于欣海,张朗,等.基于5G边缘计算的高速公路可变限速与换道协同控制[J].合肥工业大学学报(自然科学版),2025, 48(5): 642-650. [DENG W, YU X H,
ZHANG L, et al. Collaborative control of variable speed
limits and lane change on freeway based on 5G edge
computing[J]. Journal of Hefei University of Technology
(Natural Science), 2025, 48(5): 642-650.]
[5]李彬,牛万龙,胡纪龄,等.基于大数据分析的高速公路分车型拥堵态势评估[J].公路交通科技,2024,41
(8): 40-54. [LI B, NIU W L, HU J L, et al. Expressway
congestion state assessment due to different vehicle types
based on big data[J]. Journal of Highway and
Transportation Research and Development, 2024, 41(8):
40-54.]
[6]余荣杰,徐灵,章锐辞.基于多智能体深度强化学习的高速公路可变限速协同控制方法[J].同济大学学报(自然科学版),2024, 52(7): 1089-1098. [YU R J, XU L,
ZHANG R C. Coordinated variable speed limit control
for freeway based on multi-agent deep reinforcement
learning[J]. Journal of Tongji University (Natural
Science), 2024, 52(7): 1089-1098.]
[7]韩磊,张轮,郭为安.混合交通流环境下基于改进强化学习的可变限速控制策略[J].交通运输系统工程与信息, 2023, 23(3): 110-122. [HAN L, ZHANG L, GUO W
A. Variable speed limit control based on improved
dueling double deep Q network under mixed traffic
environment[J]. Journal of Transportation Systems
Engineering and Information Technology, 2023, 23(3):
110-122.]
[8]
王玥骄,卢霄娟,郑诗禹,等.智能网联环境下高速公路事故临近区可变限速控制[J].长安大学学报(自然科学版),2025, 45(3): 152-162. [WANG Y J, LU X
J, ZHENG S Y, et al. Variable speed limit control for
expressway accident vicinity area in intelligent
connected environment[J]. Journal of Chang'an University
(Natural Science Edition), 2025, 45(3): 152-162.]
[9]
白如玉,焦朋朋,陈越,等.基于强化学习的车道级可变限速控制策略[J]. 交通信息与安全, 2024, 42(1):
105-114. [BAI R Y, JIAO P P, CHEN Y, et al.
Differential variable speed limit control strategy based on
reinforcement
learning[J].
Journal
of
Transport
Information and Safety, 2024, 42(1): 105-114.]
[10] 蔡田茂, 孔伟伟,罗禹贡,等.基于MADDPG算法的匝道合流区多车协同控制[J]. 汽车安全与节能学报,
2024, 15(6): 923-933. [CAI T M, KONG W W, LUO Y
G, et al. Multi-vehicle cooperative control in ramp
merging area based on MADDPG algorithm[J]. Journal of
Automotive Safety and Engergy, 2024, 15(6): 923-933.]
[11] 尚春琳, 刘小明,田玉林,等.基于深度强化学习的综合干线协调控制方法[J].交通运输系统工程与信息,
2021, 21(3): 64-70. [SHANG C L, LIU X M, TIAN Y L,
et al. Priority of dedicated bus arterial control based on
deep reinforcement learning[J]. Journal of Transportation
Systems Engineering and Information Technology, 2021,
21(3): 64-70.]
[12] 周浩, 胡坚明,张毅,等.快速路可变限速与匝道控制协同优化策略[J].交通运输系统工程与信息,2017,17
(2): 68-75. [ZHOU H, HU J M, ZHANG Y, et al. A
coordinated optimization strategy of variable speed limit
and ramp metering for expressway[J]. Journal of
Transportation Systems Engineering and Information
Technology, 2017, 17(2): 68-75.]
[13] 邬岚, 任斯奇,陈茜,等.基于车路协同的快速路合流区可变限速控制方法[J].重庆交通大学学报(自然科学版), 2024, 43(9): 68-77. [WU L, REN S Q, CHEN Q,
et al. Variable speed limit control method based on
cooperative vehicle infrastructure system[J]. Journal of
Chongqing Jiaotong University (Natural science), 2024,
43(9): 68-77.]
[14] 宿永辉, 欧阳涛,潘新福,等.面向高速公路连续瓶颈的协同可变限速控制[J].交通运输工程与信息学报,
2024, 22(3): 166-180. [SU Y H, OUYANG T, PAN X F,
et al. A collaborative variable speed-limit control for
continuous bottlenecks on freeways[J]. Journal of
Transportation Engineering and Information, 2024, 22
(3): 166-180.]
[15] HE Z A, HAN Y, YU H, et al. Integrated feedback
perimeter control-based ramp metering and variable
speed Limits for multibottleneck freeways[J]. Journal of
Transportation Engineering, Part A: Systems, 2024, 150
(9): 04024054.
[16] 席殊, 陈旭梅,李培坤,等.考虑CAV专用道汇入需求的高速公路交织区集成控制策略[J].哈尔滨工业大学学报,2025, 57(11): 1-11, 21. [XI S, CHEN X M, LI P
K, et al. An integrated control strategy for freeway
weaving area considering CAV dedicated lanemerging
demand[J]. Journal of Harbin Institute of Technology,
2025, 57(11): 1-11, 21.]
[17] HE Z L, WANG L, SU Z C, et al. Integrating variable
speed limit and ramp metering to enhance vehicle group
safety and efficiency in a mixed traffic environment[J].
Physica A: Statistical Mechanics and its Applications,
2024, 641: 129754.
[18] XIE D F, ZHAO X M, HE Z B. Heterogeneous traffic
mixing regular and connected vehicles: Modeling and
stabilization[J].
IEEE Transactions on Intelligent
Transportation Systems, 2019, 20 (6): 2060-2071.
[19] 孙健, 宋茂星,邱果,等.基于电动汽车大数据的多等级充电站选址与服务能力研究[J].中国公路学报,
2024, 37(4): 48-60. [SUN J, SONG M X, QIU G, et al.
Location and service capability of multilevel charging
stations based on electric vehicle big data[J]. China
Journal of Highway and Transport, 2024, 37(4): 48-60.]
[20] MA M J, WU H D, S D J. Collaborative variable speed
limit for urban expressway mainline and on-ramp in
CAVs environment based on deep reinforcement learning
[J].
Physica A: Statistical Mechanics and its
Applications, 2026, 689: 131428.
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