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A macroscopic approach for optimizing road space allocation of bus lanes in multimodal urban networks through simulation analysis: An application to the Tokyo CBD network

机译:仿真分析优化多峰市网络公交车道公交车道路空间分配的宏观方法:东京CBD网络的应用

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Traffic congestion in urban areas leads to huge economic loss. Smart transportation systems are needed for efficient operations of the core economic activities. To develop such systems, we focus on multimodal urban transport systems, particularly on the optimization of dedicated bus lanes which is regarded as one of the most promising traffic demand management measures. Although there exists a great body of literature on the operation and planning of the dedicated bus lanes, quantitative approach is still lacked for evaluating the relationship between lane space and traffic performance, especially at the system level. In this context, [8] proposed to decide the allocation of the dedicated bus lanes based on the three-dimensional macroscopic fundamental diagram (3D-MFD). The proposed bus lane optimization framework was applied and tested utilizing the Geneva network via simulation. This paper follows the direction of the 3D-MFD based macroscopic approach, and it implements this approach, with slight modification, to the Tokyo CBD area which has a complete different and more complex network structure, to verify the robustness and the universality of the approach. We illustrate the 3D-MFD for the current network. It is found that the results of 3D-MFD are consistent with the results of [9]. That is, it is crucial to ensure certain number of buses running in the network, in order to optimize the network performance in terms of passenger service throughput.
机译:城市地区交通拥堵导致巨大的经济损失。核心经济活动的有效运营需要智能运输系统。为了开发这样的系统,我们专注于多模式城市运输系统,特别是在优化专用公交车道上,被认为是最有前途的交通需求管理措施之一。虽然在专用公交车道的操作和规划中存在一个很大的文献,但仍然缺乏对车道空间和交通性能之间的关系的定量方法,特别是在系统级别。在这方面,[8]建议根据三维宏观基础图(3D-MFD)决定专用总线车道的分配。通过模拟使用日内瓦网络应用和测试所提出的总线优化框架。本文跟随基于3D-MFD的宏观方法的方向,它实现了这种方法,略微修改,到具有完整不同和更复杂的网络结构的东京CBD区域,以验证这种方法的鲁棒性和普遍性。我们说明了当前网络的3D-MFD。结果发现3D-MFD的结果与[9]的结果一致。也就是说,确保在网络中运行的某些总线是至关重要的,以便在乘客服务吞吐量方面优化网络性能。

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