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作 者:曲大义 刘浩敏 杨子奕 戴守晨 QU Da-yi;LIU Hao-min;YANG Zi-yi;DAI Shou-chen(School of Mechanical&Automotive Engineering,Qingdao University of Technology,Qingdao 266525,China)
机构地区:[1]青岛理工大学机械与汽车工程学院,山东青岛266525
出 处:《吉林大学学报(工学版)》2024年第8期2187-2196,共10页Journal of Jilin University:Engineering and Technology Edition
基 金:国家自然科学基金项目(52272311,51678320).
摘 要:针对快速路瓶颈路段存在大量的车道变换行为而造成的交通拥堵问题,以快速路交织区这一交通流频变区域为例,分析其车路协同运行特征,建立了交通瓶颈路段车流动态分配模型,采用C-V2X、边缘计算等技术,设计基于车路协同的车流动态分配系统,研究其运行机制。运用MATLAB元胞传输模型仿真分析了车流分配系统,仿真结果表明:动态分配系统优化效果明显,在同步流状态下通行时间缩短11.4%左右,拥堵流状态下通行时间缩短幅度可达39.7%。研究结果对减少快速路交织瓶颈区域的运行延误,提高车流运行效率和快速路通行能力具有重要意义。In response to the traffic congestion caused by a large number of lane-changing behaviors in bottleneck sections of expressways,taking the weaving section of expressway as an example,which is a frequency variable area of traffic flow,this paper analyzes the characteristics of vehicle infrastructure cooperation operation,establishes a dynamic assignment model of traffic flow in the bottleneck section,uses C-V2X,edge computing and other technologies,designs a dynamic allocation system of vehicle flow based on vehicle infrastructure cooperation,and studies its operation mechanism.The traffic flow allocation system is simulated and analyzed using MATLAB cellular transmission model.The simulation results show that the optimization effect of the dynamic allocation system is obvious.The traffic time is reduced by about 11.4% in synchronous flow state and 39.7% in congested flow state.The research results are of great significance to reduce the operation delay in the weaving bottleneck area of the expressway and improve the traffic flow efficiency and expressway capacity.
关 键 词:交通运输规划与管理 交通瓶颈 交通流特性 车路协同系统 动态交通分配
分 类 号:U491.2[交通运输工程—交通运输规划与管理]
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