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Development and evaluation of operational strategies for providing an integrated diamond interchange ramp-metering control system

机译:制定和评估提供集成的钻石互换坡度计量控制系统的操作策略

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摘要

Diamond interchanges and their associated ramps are where the surface street arterial system and the freeway system interface. Historically, these two elements of the system have been operated with little or no coordination between the two. Therefore, there is a lack of both analysis tools and operational strategies for considering them as an integrated system. One drawback of operating the ramp-metering system and the diamond interchange system in isolation is that traffic from the ramp, particularly if it is metered, can spill back into the diamond interchange, causing both congestion and safety concerns at the diamond interchange. While flushing the ramp queues by temporarily suspending ramp metering has been the primary strategy for preventing queue spillback, it can result in freeway system breakdown, which would affect the entire system's efficiency. The aim of this research was to develop operational strategies for managing an integrated diamond interchange ramp-metering system (IDIRMS). Enhanced modeling methodologies were developed for an IDIRMS. A computer model named DRIVE (Diamond Interchange and Ramp Metering Integration Via Evaluation) was developed, which was characterized as a mesoscopic simulation and analysis model. DRIVE incorporated the enhanced modeling methodologies developed in this study and could be used to perform system analysis for an IDIRMS given a set of system input parameters and variables. DRIVE was validated against a VISSIM microscopic simulation model, and general agreement was found between the two models. System operational characteristics were investigated using DRIVE to gain a better understanding of the system features. Integrated control strategies (ICS) were developed based on the two commonly used diamond interchange phasing schemes, basic three-phase and TTI four-phase. The ICS were evaluated using VISSIM microscopic simulation under three general traffic demand scenarios: low, medium, and high, as characterized by the volume-to-capacity ratios at the metered ramps. The results of the evaluation indicate that the integrated operations through an adaptive signal control system were most effective under the medium traffic demand scenario by preventing or delaying the onset of ramp-metering queue flush, thereby minimizing freeway breakdown and system delays.
机译:钻石交汇处及其相关的坡道是地面街道动脉系统和高速公路系统相交的地方。从历史上看,系统的这两个要素在两者之间很少或没有协调的情况下运行。因此,缺乏将分析工具和操作策略视为一个集成系统的方法。单独操作斜坡计量系统和钻石交换系统的一个缺点是,特别是如果对其进行计量的话,来自斜坡的交通会溢出回到钻石交换中,从而在钻石交换处引起拥挤和安全问题。虽然通过暂时中止斜坡计量来冲刷斜坡队列一直是防止队列溢出的主要策略,但它可能导致高速公路系统崩溃,从而影响整个系统的效率。这项研究的目的是开发用于管理集成钻石互换坡度测量系统(IDIRMS)的运营策略。为IDIRMS开发了增强的建模方法。开发了一个名为DRIVE(通过评估的交流和坡道计量集成)的计算机模型,该模型的特征是介观的仿真和分析模型。 DRIVE结合了本研究中开发的增强建模方法,可以在给定一组系统输入参数和变量的情况下用于IDIRMS的系统分析。通过VISSIM微观仿真模型对DRIVE进行了验证,并且在这两个模型之间找到了总体共识。使用DRIVE对系统运行特性进行了调查,以更好地了解系统功能。基于两种常用的菱形互换定相方案(基本三相和TTI四相),开发了集成控制策略(ICS)。 ICS是使用VISSIM微观仿真在三种一般交通需求场景下进行评估的:低,中和高,其特征是在计量坡道处的容积比。评估结果表明,通过自适应信号控制系统进行的综合操作在中等交通需求情况下最有效,它可以防止或延迟匝道计量队列冲洗的开始,从而最大程度地减少高速公路故障和系统延迟。

著录项

  • 作者

    Tian Zongzhong;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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