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首页> 外文期刊>KSCE journal of civil engineering >A Signal Control Model Integrating Arterial Intersections and Freeway Off-ramps
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A Signal Control Model Integrating Arterial Intersections and Freeway Off-ramps

机译:集成了交叉路口和高速公路匝道的信号控制模型

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Vehicles on urban freeway off-ramps often have difficulty in exiting due to congestion on the arterial routes. The resulting queue on the off-ramp generates a spillover onto the mainstream of the urban freeways, leading to serious problems such as decreased capacity and traffic safety. In this study, a signal control model for minimizing the total delay of off-ramps and connected downstream arterial roads is developed. The results demonstrate the proposed model's ability to reduce the delay of off-ramp and freeway mainstream. The developed model calculates an optimal signal time at off-ramps and arterial intersections by a linear programming technique with a variety of variables such as traffic volume, link length, and queue length. The simulation results show that as the traffic volumes of both off-ramps and arterials approach the saturation flow, the proposed model can increase the number of throughputs at off-ramps, decrease the average delay of whole links, and prevent the decrease of capacity on the mainstream of urban freeways by reducing the queue length at off-ramps. Especially, the reductions in the average delay time of whole links are 21.5% and 13.0% compared to T7F model and Sequential Control Model, respectively.
机译:由于高速公路路线上的拥堵,市区高速公路下坡道上的车辆通常难以驶出。由此产生的驶入匝道的队列将溢出溢出到城市高速公路的主流上,从而导致严重的问题,例如交通能力下降和交通安全。在这项研究中,开发了一种信号控制模型,可最大程度地减少匝道和连接的下游主干道的总延迟。结果表明,提出的模型具有减少匝道和高速公路主流延迟的能力。所开发的模型通过具有各种变量(例如交通量,链路长度和队列长度)的线性编程技术,计算出匝道和动脉交叉口的最佳信号时间。仿真结果表明,随着匝道和动脉流量的接近饱和流量,所提出的模型可以增加匝道的通过量,减少整个链路的平均时延,并防止通行能力的下降。通过减少非匝道的排队长度,将其作为城市高速公路的主流。特别是,与T7F模型和顺序控制模型相比,整个链路的平均延迟时间分别减少了21.5%和13.0%。

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