不同运营方案下的城市轨道交通弹性:基于渗流的方法

IF 14.5 Q1 TRANSPORTATION
Tianlei Zhu , Xin Yang , Yun Wei , Anthony Chen , Jianjun Wu
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引用次数: 0

摘要

为准确评估城市轨道交通系统在不同运行条件下的弹性,提高其运行能力,基于渗流理论,综合多源信息和运行特征,建立了非自由流交通网络渗流模型。我们的模型考虑了网络中不同层次结构的状态演化,并识别了非线性特征。具体而言,我们观察到URT网络中存在显著的渗透转变,不同时间的关键渗透阈值存在明显差异,导致多状态行为。网络瓶颈在空间上随网络相变而变化,表现出幂律频率特性。在全天弹性评估结果的基础上,分析了在弹性最低的早高峰时段,不同运行方案对网络弹性的影响。结果表明,本文提出的弹性分析框架能够有效地评价轨道交通网络弹性,为提高运营管理效率和事故预防措施提供理论支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Urban rail transit resilience under different operation schemes: A percolation-based approach
To assess the resilience of urban rail transit (URT) systems under various operational conditions accurately and enhance their operation, this study develops a percolation model for nonfree flow transportation networks on the basis of percolation theory, which integrates multisource information and operational characteristics. Our model accounts for the state evolution of different hierarchical structures within the network and identifies nonlinear features. Specifically, we observed significant percolation transitions in the URT network, with distinct differences in critical percolation thresholds at different times, leading to multistate behavior. Network bottlenecks spatially shift with network phase transitions, exhibiting power-law frequency characteristics. On the basis of the full-day resilience assessment results, we analyzed the impact of different operational schemes on network resilience during the morning peak, the period with the lowest resilience. The results demonstrate that our resilience analysis framework effectively evaluates URT network resilience, providing theoretical support for enhancing operational management efficiency and accident prevention measures.
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