Evaluating the impact of real-time traffic control measures on the resilience of urban road networks

S. Amini, G. Tilg, F. Busch
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引用次数: 5

Abstract

This paper proposes a methodology to evaluate the performance of a road network during non-recurring congestion for real-time traffic control applications. A novel performance indicator based on the concept of the macroscopic fundamental diagram (MFD) is developed to assess the travel production of the network. The proposed indicator is obtained by calculating the weighted space-mean flow of an urban network, which is a proxy for the travel production of the corresponding network. The resilience of the road network is defined as its ability to retain the same level of travel production after occurrence of a disruption. This paper shows how real-time traffic control measures can enhance the resilience of the network. More specifically, the impact of re-routing as a real-time traffic management measure is investigated in a network where a link is closed due to an unpredictable incident. The main advantage of this approach in comparison to the existing travel time based approaches is that it neither requires a detailed model of the network nor a calibration of a dynamic traffic assignment model for different demand scenarios, as the MFD is a property of the network and is not sensitive to small changes in demand.
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评价实时交通管制措施对城市道路网络弹性的影响
本文提出了一种方法来评估道路网络的性能在非经常性拥堵的实时交通控制应用。基于宏观基本图(MFD)的概念,提出了一种新的评价路网出行产出的绩效指标。该指标是通过计算城市网络的加权空间平均流量得到的,该指标是相应网络的出行产量的代表。道路网络的弹性被定义为其在发生中断后保持相同水平的旅行生产的能力。本文展示了实时流量控制措施如何增强网络的弹性。更具体地说,在网络中,由于不可预测的事件导致链路关闭,研究了重路由作为实时流量管理措施的影响。与现有的基于出行时间的方法相比,这种方法的主要优点是,它既不需要详细的网络模型,也不需要针对不同需求情景校准动态交通分配模型,因为MFD是网络的一个属性,对需求的微小变化不敏感。
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