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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Capacity of Advance Right-Turn Motorized Vehicles at Signalized Intersections for Mixed Traffic Conditions
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Capacity of Advance Right-Turn Motorized Vehicles at Signalized Intersections for Mixed Traffic Conditions

机译:用于混合交通条件的信号交叉口的前进电动车辆的能力

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Right-turn motorized vehicles turn right using channelized islands, which are used to improve the capacity of intersections. For ease of description, these kinds of right-turn motorized vehicles are called advance right-turn motorized vehicles (ARTMVs) in this paper. The authors analyzed four aspects of traffic conflict involving ARTMVs with other forms of traffic flow. A capacity model of ARTMVs is presented here using shockwave theory and gap acceptance theory. The proposed capacity model was validated by comparison to the results of the observations based on data collected at a single intersection with channelized islands in Kunming, the Highway Capacity Manual (HCM) model and the VISSIM simulation model. To facilitate engineering applications, the relationship describing the capacity of the ARTMVs with reference to the distance between the conflict zone and the stop line and the relationship describing the capacity of the ARTMVs with reference to the effective red time of the nonmotorized vehicles moving in the same direction were analyzed. The authors compared these results to the capacity of no advance right-turn motorized vehicles (NARTMVs). The results show that the capacity of the ARTMVs is more sensitive to the changes in the arrival rate of nonmotorized vehicles when the arrival rate of the nonmotorized vehicles is 500??(veh/h)~2000??(veh/h) than when the arrival rate is some other value. In addition, the capacity of NARTMVs is greater than the capacity of ARTMVs when the nonmotorized vehicles have a higher arrival rate.
机译:右转电动车辆使用通道化岛右转,用于提高交叉口的容量。为了便于描述,本文称为这些类型的右转电动车辆推出右转电动车辆(ARTMVS)。作者分析了交通冲突的四个方面,涉及其他形式的交通流量的ArtMV。这里使用Shockwave理论和差距接受理论在这里提供ArtMV的容量模型。通过基于在昆明通道的通道岛上收集的数据,高速公路容量手册(HCM)模型和VISSIM仿真模型,通过比较验证了所提出的能力模型。为了促进工程应用,与参考冲突区和停止线路之间的距离和参考非可选车辆的有效红时间的关系描述ARTMV的容量的关系分析了方向。作者将这些结果与未提前右转电动车辆(NARTMV)的能力进行了比较。结果表明,当非可选车辆的到达率为500 ??(VEVE / H)〜2000 ??(VEL / H)时,ARTMVS的容量对非可家具车辆到达率的变化更敏感到达率是其他一些价值。此外,当非可聚化的车辆具有更高的到达率时,NARTMV的容量大于ARTMV的容量。

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