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Exclusive Bus Lane Network Design: A Perspective from Intersection Operational Dynamics

机译:公交专用道网络设计:交叉路口运行动态的视角

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Exclusive bus lanes have demonstrated their effectiveness in increasing capacity and efficiency. However, when discussing the optimal design of exclusive bus lanes at the network level, existing studies predominantly focus on the interaction between transit and private vehicles at the links, while operational dynamics at the intersections and their impacts were insufficiently addressed. This paper contributes to developing a mathematical model for exclusive bus lane network design with operational dynamics at intersections explicitly captured. In the proposed model, lane re-configuration for transit and private vehicles at both road segments and intersections along with signal timing optimization are integrated in a unified framework. The model features a bi-level structure with the objective for reducing the total system person travel time. A genetic algorithm embedded with Emme is used for yielding solutions to the model. Results from both numerical and empirical tests demonstrate the effectiveness of the proposed model and reveal that setting of exclusive bus lanes in the network without explicit consideration of intersection operational dynamics can significantly undermine the network performance with respect to both bus passengers and private vehicles.
机译:专用公交专用道已显示出其在提高容量和效率方面的有效性。但是,当讨论网络级别的专用公交专用道的最佳设计时,现有研究主要集中在链接处的公交车和私家车之间的相互作用,而交叉路口的运营动态及其影响却未得到充分解决。本文为开发专用公交专用道网络设计的数学模型做出了贡献,并明确捕获了交叉路口的运行动态。在所提出的模型中,在路段和交叉路口的公交和私家车的车道重新配置以及信号定时优化都集成在一个统一的框架中。该模型具有双层结构,其目的是减少总的系统人员出行时间。嵌入Emme的遗传算法用于产生模型的解。数值和经验测试的结果都证明了该模型的有效性,并揭示了在网络中设置专用公交车道而未明确考虑交叉路口运行动态的情况,这会严重破坏公交乘客和私人车辆的网络性能。

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