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Incorporating within link dynamics in an agent-based computationally faster and scalable queue model

机译:将链路动态纳入基于代理的计算速度更快且可扩展的队列模型中

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摘要

The growing pace of urbanization increases the need of simulation models to handle large-scale scenarios in reasonable time. The present study proposes a fast spatial queue model, which is anchored to an agent-based travel demand simulation framework. The existing queue model is extended to produce more realistic flow dynamics by introducing backward travelling holes to mixed traffic conditions. In this approach, the space freed by a leading vehicle is not immediately available to the following vehicle. The resulting dynamics resembles Newell's simplified kinematic wave model. The space freed corresponding to each leaving vehicle is named as hole' and, as following vehicles occupy the space freed by leading vehicles, the hole travels backward. This results in triangular fundamental diagrams for traffic flow. The robustness of the model is tested with flow density and average bike passing rate contours. Spatio-temporal trajectories are presented to differentiate the queuing patterns. Finally, a comparison of the computational performance of the different link and traffic dynamics of the queue model is made.
机译:随着城市化进程的加快,人们越来越需要仿真模型来在合理的时间内处理大规模场景。本研究提出了一种快速的空间队列模型,该模型被锚定到基于代理的旅行需求模拟框架上。通过将后向行驶孔引入混合交通条件,扩展了现有的队列模型以产生更逼真的流动动力学。在这种方法中,由领先车辆释放的空间不能立即用于随后的车辆。产生的动力学类似于Newell的简化运动波模型。对应于每辆离开的车辆释放的空间被称为“空洞”,并且当跟随的车辆占据领先车辆释放的空间时,该空洞向后移动。这样就形成了交通流量的三角形基本图。该模型的鲁棒性通过流量密度和平均自行车通过率等高线进行测试。提出了时空轨迹以区分排队模式。最后,比较了不同链接的计算性能和队列模型的流量动态。

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