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A RATIONALE FOR INCORPORATING ITS APPLICATIONS' EFFECT INTO THE HCM SIGNALIZED FACILITIES ANALYSIS PROCEDURE

机译:将其应用效果纳入HCM信号化设施分析程序的合理性

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The signalized intersection methodology in the Highway Capacity Manual 2010 (HCM) deals with saturation flow rate and control delay estimations. The HCM currently does not explicitly consider the impact of Intelligent Transportation Systems (ITS) applications in its signalized intersection methodology. This paper attempted to quantify the impact of saturation flow rates and delay performance under a few selected ITS applications at the signalized intersection. The purpose was to investigate whether the HCM procedure should be revised to account for the ITS strategies. A microscopic simulation modeling approach was utilized to quantify the impact of advanced operational strategies supported by ITS. The results demonstrated that the Cooperative Adaptive Cruise Control (CACC), due to reduction in headway, resulted in significantly increased capacity over the base scenario. Immediate departure application improved capacity due to better use of effective green time. Pedestrian responsive signal operations reduced capacity due to the use of signal optimization. The simulation results clearly suggests that a procedure accommodating increased capacity or saturation flow rate from the ITS strategies should be developed to properly reflect the impacts of ITS strategies at the signalized intersection analyses.
机译:《高速公路通行能力手册2010》(HCM)中的信号交叉口方法论涉及饱和流量和控制延迟估计。 HCM当前未在其信号交叉口方法中明确考虑智能交通系统(ITS)应用程序的影响。本文试图量化在信号交叉口的一些选定ITS应用下饱和流量和延迟性能的影响。目的是调查是否应修改HCM程序以考虑ITS策略。微观仿真建模方法用于量化ITS支持的高级运营策略的影响。结果表明,由于行进距离的减少,协作式自适应巡航控制(CACC)导致容量大大超过了基本方案。由于更好地利用了有效的果岭时间,即时出发应用程序提高了容量。行人响应信号操作由于使用信号优化而减少了容量。仿真结果清楚地表明,应该开发一种适应ITS策略增加容量或饱和流量的程序,以正确反映ITS策略在信号交叉口分析中的影响。

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