Ramp Metering Strategy Based on Spatial Variation of Density within Type C Weaving Section
编号:439 访问权限:仅限参会人 更新:2021-12-16 15:29:56 浏览:117次 张贴报告

报告开始:2021年12月17日 09:48(Asia/Shanghai)

报告时间:1min

所在会场:[P1] Poster2020 [P1T3] Track 3 Vehicle Operation Engineering and Transportation Management

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摘要
Type C weaving sections which are typically located near freeway-freeway interchanges have high weaving demand volume, which leads to severe bottlenecks. Ramp metering (RM) has emerged as a popular active traffic management strategy, and ample research has been devoted to develop ramp metering control algorithms. However, the application of RM control algorithms for type C weaving sections has received limited attention. A conventional RM control algorithm focuses on maintaining desired speed on all lanes of the mainlane by controlling the entry volumes, which works well for entry ramps near merge areas or type A weaving sections but not at Type C weaving sections. Therefore, a modified local RM control strategy, which is specifically designed to improve the traffic conditions within type C weaving areas, is proposed. The traffic operation characteristics within a type C weaving section are explored in detail. Asservissement Linéaire d’Entrée Autoroutière (ALINEA) is used to study the proposed RM strategy at three C-type weaving sections located in Los Angeles, California. VISSIM simulation results show the modified ALINEA strategy provides a better level of service than the conventional ALINEA methodology and can improve the traffic operations within the type C weaving area by directly addressing the heavy lane changes. For modified ALINEA strategy, the study recommends the desired occupancy value of 30 percent for the type C weaving section. A demand sensitivity analysis is performed to study and optimize the operation of ramp meter with higher mainlane demands.
关键词
CICTP;Type C weaving section;Ramp Metering;Asservissement Linéaire d’Entrée Autoroutière (ALINEA)
报告人
Jiangling WU
Henan Universty

吴江玲,博士,副教授,硕士生导师。2017年毕业于长安大学(硕博连读),获博士学位;长安大学、The University of Texas at Austin联培博士;2018年至今,河南大学土木建筑学院任教职。

主讲课程:《交通工程总论》、《Transportation Engineering》I&II、《土木工程专业英语》(本科生)、《专业英语》(研究生),主要研究方向:道路交通、交通规划与管理、交通安全、智能交通,发表论文18篇,其中SCI、EI收录9篇,主持或参与国家级科研项目3项、省部级科研项目3项,参编著作2部,获国家实用新型专利3项,软件著作权2项,在指导研究生4人。

Amit Kumar Singh
Senior Engineer Atkins

稿件作者
Jiangling WU Henan University
Huan Wang Henan Universty
Amit Kumar Singh Atkins
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重要日期
  • 会议日期

    12月17日

    2021

    12月20日

    2021

  • 12月16日 2021

    报告提交截止日期

  • 12月24日 2021

    注册截止日期

主办单位
Chinese Overseas Transportation Association
Chang'an University
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