首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Discharge Characteristics Analysis of Queued-up Vehicles at Signal-Controlled Intersections Under Heterogeneous Traffic Conditions
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Discharge Characteristics Analysis of Queued-up Vehicles at Signal-Controlled Intersections Under Heterogeneous Traffic Conditions

机译:异构交通条件下信号控制交叉口排队车辆的放电特性分析

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Characteristics of discharge vehicle play a significant role in the concept of capacity estimation and designing of a signal-controlled intersection. Highway Capacity Manual (HCM) (Transportation Research Board of the National Academics, 5th edn, Washington, DC, 2000) presents a methodology for analysing signalized intersection considering details of each parameter for a lane-based car-dominated traffic stream, with limited applicability for the mixed traffic conditions. The present study analyses the departure headway characteristics of queued vehicles where a decreasing trend is observed with increase in vehicle position with a saturation headway of 2.05s/veh. The distributions of departure headways are also analysed, and hypothesis result shows that the departure headways at each vehicle position follow a particular log-normal distribution with varying mean and variance. An optimization technique is framed to find out the discharge of vehicles through minimizing the difference between observed flow and ideal flow proposed by HCM (2000). Dynamic passenger car units (PCU) are also estimated through minimizing the Theil's coefficient for accurate estimation of discharge pattern for mixed traffic conditions. The result shows that optimized discharge pattern is close to the ideal one with maximum saturation flow of 1908 PCUs/h (HCM proposed 1900 PCUs/h). A comparative analysis is done between the obtained flow value and flow value proposed by several guidelines and studies to check its suitability for mixed traffic stream.
机译:放电车辆的特性在容量估计和信号控制交叉口的设计概念中起着重要作用。高速公路通行能力手册(HCM)(美国国家运输研究委员会,第5版,华盛顿特区,2000年)提出了一种分析信号交叉口的方法,该方法考虑了基于车道的以汽车为主的交通流的每个参数的详细信息,但适用性有限针对混合交通状况。本研究分析了排队车辆的离开时距特性,其中随着车辆位置的增加观察到下降趋势,饱和时距为2.05s / veh。还分析了驶离车道的分布,假设结果表明,每个车辆位置处的驶离车道都遵循特定的对数正态分布,均值和方差均变化。通过将HCM(2000)提出的观测流量与理想流量之间的差异最小化,可以构造出一种优化技术来找出车辆的排放。还可以通过最小化Theil系数来估算动态乘用车单位(PCU),以准确估算混合交通状况下的排放模式。结果表明,优化的放电模式接近理想模式,最大饱和流量为1908 PCU / h(HCM建议为1900 PCU / h)。对获得的流量值和一些指南和研究提出的流量值进行了比较分析,以检查其是否适合混合交通流。

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