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Determination of Capacity at Two-Way Stop-Controlled Urban Intersections

机译:双向停车控制的城市交叉口通行能力的确定

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Capacity analysis at Two-Way Stop-Controlled (TWSC) intersections depends on a clear description and understanding of the interaction of drivers on the minor or stop-controlled approach with drivers on the major street. As to capacities at TWSC urban intersections affected significantly by signalized intersections, an appropriate model should include the ability to represent traffic interactions in the gap acceptance process, platoon dispersion qualities, and signalized intersection control systems. Based on the field investigation and observation data at several typical TWSC intersections, gap features of major traffic streams are analyzed at TWSC intersections affected by upstream signalized intersections. Furthermore, both gap acceptance theory and motorcade analysis method are utilized to analyze the minor stream capacities at TWSC intersections. As a result, a methodology for determining the capacities at TWSC intersections is presented under one-way gap and two-way gap conditions and a computing program is designed and programmed. At last, an empirical study is given and the computing results calculated by Highway Capacity Manual (HCM2000) and the methodology proposed in the paper are compared that prove the effectiveness of the methodology. In conclusion, the methodology provides a quite valuable reference for determining the capacities at TWSC urban intersections.
机译:双向停车控制(TWSC)交叉路口的通行能力分析取决于对次要或停车控制方式的驾驶员与主要街道上的驾驶员之间的交互作用的清晰描述和理解。至于受信号交叉口影响较大的TWSC城市交叉口的通行能力,适当的模型应包括代表间隙接受过程中交通交互的能力,排的质量和信号交叉口控制系统。基于几个典型TWSC交叉口的现场调查和观察数据,分析了受上游信号交叉口影响的TWSC交叉口主要交通流的间隙特征。此外,利用间隙接受理论和车队分析方法来分析TWSC交叉口的次要流量。结果,提出了一种在单向间隙和双向间隙条件下确定TWSC交叉口通行能力的方法,并设计和编程了一个计算程序。最后进行了实证研究,比较了《公路通行能力手册》(HCM2000)和本文提出的方法的计算结果,证明了该方法的有效性。总之,该方法为确定TWSC城市交叉口的通行能力提供了相当有价值的参考。

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