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自动跟踪动态临界占有率的匝道协调控制方法

徐堃 柴干 李清泉 郭建华 李晓达

徐堃, 柴干, 李清泉, 郭建华, 李晓达. 自动跟踪动态临界占有率的匝道协调控制方法[J]. 交通运输工程学报, 2016, 16(2): 150-158. doi: 10.19818/j.cnki.1671-1637.2016.02.018
引用本文: 徐堃, 柴干, 李清泉, 郭建华, 李晓达. 自动跟踪动态临界占有率的匝道协调控制方法[J]. 交通运输工程学报, 2016, 16(2): 150-158. doi: 10.19818/j.cnki.1671-1637.2016.02.018
XU Kun, CHAI Gan, LI Qing-quan, GUO Jian-hua, LI Xiao-da. Coordinated control method of ramps based on automatic tracking dynamic critical occupancy[J]. Journal of Traffic and Transportation Engineering, 2016, 16(2): 150-158. doi: 10.19818/j.cnki.1671-1637.2016.02.018
Citation: XU Kun, CHAI Gan, LI Qing-quan, GUO Jian-hua, LI Xiao-da. Coordinated control method of ramps based on automatic tracking dynamic critical occupancy[J]. Journal of Traffic and Transportation Engineering, 2016, 16(2): 150-158. doi: 10.19818/j.cnki.1671-1637.2016.02.018

自动跟踪动态临界占有率的匝道协调控制方法

doi: 10.19818/j.cnki.1671-1637.2016.02.018
基金项目: 

国家自然科学基金项目 61573106

详细信息
    作者简介:

    徐堃:徐望(1970-), 男, 湖北洪湖人, 武汉大学工学博士研究生, 从事智能交通系统研究

    李清泉(1965-), 男, 安徽天长人, 武汉大学教授, 工学博士

  • 中图分类号: U491.54

Coordinated control method of ramps based on automatic tracking dynamic critical occupancy

More Information
    Author Bio:

    XU Kun(1970-), male, doctoral student, +86-27-86585549, xk.ben@126.com

    LI Qing-quan(1965-), male, professor, PhD, + 86-755-26536101, liqq@szu.edu.cn

  • 摘要: 为了解决高速公路主线合流区交通拥挤与入口匝道排队溢出问题, 提出了一种入口匝道协调控制方法, 依据主线合流区交通状态和入口匝道排队长度设计需要协调控制的匝道个数, 以扩大协调匝道组的空间容量, 增大截留进入主线交通拥挤区域车辆的能力; 应用实时检测的主线合流区通过量和占有率估计主线动态临界占有率, 采用入口匝道调节率自动跟踪主线合流区动态临界占有率的变化, 以提高主线通过量; 采用匝道相对排队长度设计启发式规则, 以提高入口匝道协调控制能力, 防止排队溢出; 以沪宁高速公路G42为仿真背景, 应用VISSIM仿真软件, 从路网性能、主线合流区交通状态和匝道排队长度三方面对提出方法的控制效果进行评价。计算结果表明: 相比于无控制算法, 采用控制方法的总行程时间减少约8.44%, 路网平均延误减少约62.97%;采用ALINEA算法的总行程时间减少约2.85%, 路网平均延误减少约21.20%;采用Linked-control算法的总行程时间减少约6.00%, 路网平均延误减少约56.17%;采用控制方法的主线合流区的交通通过量在交通状态突变时增加了540 veh·h-1, 且各个匝道之间排队长度更加均衡。可见, 提出方法控制效果优良。

     

  • 图  1  沪宁高速试验路段

    Figure  1.  Test section of Shanghai-Nanjing Freeway

    图  2  人口匝道1的交通需求

    Figure  2.  Traffic demand of on-ramp 1

    图  3  入口匝道2的交通需求

    Figure  3.  Traffic demand of on-ramp 2

    图  4  入口匝道3的交通需求

    Figure  4.  Traffic demand of on-ramp 3

    图  5  人口匝道4的交通需求

    Figure  5.  Traffic demand of on-ramp 4

    图  6  匝道1合流区占有率

    Figure  6.  Ramp 1 occupancies in merging area

    图  7  匝道2合流区占有率

    Figure  7.  Ramp 2 occupancies in merging area

    图  8  从匝道个数动态变化

    Figure  8.  Dynamic change of affiliated ramp number

    图  9  匝道1的排队长度

    Figure  9.  Queue lengths of ramp 1

    图  10  匝道2的排队长度

    Figure  10.  Queue lengths of ramp 2

    图  11  匝道3的排队长度

    Figure  11.  Queue lengths of ramp 3

    图  12  匝道4的排队长度

    Figure  12.  Queue lengths of ramp 4

    表  1  仿真参数

    Table  1.   Simulation parameters

    表  2  路网性能仿真结果

    Table  2.   Simulation result of network performances

    表  3  匝道合流区交通量

    Table  3.   Ramp traffic volumes in merging area

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  • 收稿日期:  2016-01-22
  • 刊出日期:  2016-04-25

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