基于结构和功能的城市公共交通系统弹性评价模型

IF 3.7 Q1 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
Changkun Chen, Fan He, Rongfu Yu, Siqi Wang, Qile Dai
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引用次数: 0

摘要

城市化和极端气候的日益频繁影响着城市公共交通系统的可持续性,提高弹性是可持续发展的主要方向之一。为科学评价城市公共交通系统的弹性,建立了基于结构和功能的弹性评价模型。该模型以数学方式量化和模拟了公共交通系统在中断情景下的结构和功能变化,并提供了六种能力的综合评估:1)结构阻力、2)结构可恢复性、3)功能阻力、4)功能可恢复性、5)乘客适应性和6)管理适应性。根据初始故障站点的不同,该模型可以模拟不同场景下公共交通系统的弹性。该模型应用于某省会城市公共交通系统在设备故障情况下的弹性评估。结果表明,设备故障对弹性的影响因地铁线路的不同而不同,并提出了功能可恢复性和管理适应性的改进策略。利用所提出的模型可以识别城市公共交通系统弹性方面的弱点,这有助于提供提高面对扰动能力的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resilience assessment model for urban public transportation systems based on structure and function

Urbanization and the increasing frequency of extreme climates affect the sustainability of urban public transportation systems, and improving resilience is one of the primary directions for sustainable development. To scientifically assess the resilience of urban public transportation systems, a resilience assessment model based on structure and function is established in this study. This model mathematically quantifies and simulates the structural and functional changes in public transportation systems under disruption scenarios and provides a comprehensive assessment of six abilities: 1) structural resistance, 2) structural recoverability, 3) functional resistance, 4) functional recoverability, 5) passenger adaptability, and 6) management adaptability. Depending on the initial failure stations, this model can simulate the resilience of a public transportation system under various scenarios. This model is applied to assess the resilience of public transportation systems in a provincial capital city under an equipment failure scenario. The results show that the impact of equipment failure on resilience varies according to the metro lines, and improvement strategies for functional recoverability and management adaptability are proposed. The weaknesses in the resilience of urban public transportation systems can be identified using the proposed model, which helps provide strategies for improving the capacity to face perturbations.

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来源期刊
安全科学与韧性(英文)
安全科学与韧性(英文) Management Science and Operations Research, Safety, Risk, Reliability and Quality, Safety Research
CiteScore
8.70
自引率
0.00%
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审稿时长
72 days
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