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Queuing under perimeter control: Analysis and control strategy

机译:周界控制下的排队:分析和控制策略

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Many network-wide traffic management strategies based on the Macroscopic or Network Fundamental Diagram (NFD) have been developed in recent years. In this paper we investigate one of these strategies, namely feedback NFD-based perimeter control, which limits the rate at which vehicles are allowed to enter an urban region. The inflow limitation is imposed at selected main entry links (gated links) and results in queuing of vehicles at the boundaries of the network. Most of the works on this subject neglected the effect of the queued vehicles on the traffic conditions upstream of the gated links. In this paper we analyze in microsimulation the queuing at the gated links and its effect on network performance for a realistic network model. Moreover, a queue management strategy based on a continuous quadratic knapsack problem aiming at balancing relative queues at the gated links is proposed. Simulation results suggest that queues under perimeter control are shorter in space and time than with no perimeter control. Additionally, managing the queues at the gated links not only improves the overall network performance but also reduces the possibility of queue propagation to the upstream junctions. This improves traffic flow outside the protected network.
机译:近年来,已经开发了许多基于宏观或网络基本图(NFD)的全网络流量管理策略。在本文中,我们研究了其中一种策略,即基于NFD反馈的边界控制,该策略限制了车辆进入市区的速度。流入限制被强加在选定的主入口链路(门控链路)上,并导致车辆在网络边界处排队。关于该主题的大多数工作都忽略了排队车辆对门控路段上游交通状况的影响。在本文中,我们在微观仿真中分析了门控链路的排队及其对实际网络模型的网络性能的影响。此外,提出了一种基于连续二次背包问题的队列管理策略,旨在平衡门控链路上的相对队列。仿真结果表明,与没有边界控制的情况相比,处于边界控制下的队列在空间和时间上更短。此外,管理门控链路上的队列不仅可以提高整体网络性能,还可以减少队列传播到上游结点的可能性。这样可以改善受保护网络外部的流量。

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