多层交通网络结构是否应该减少?

IF 3.3 3区 工程技术 Q2 TRANSPORTATION
Yue Zhang , Bin Shuai , Jing Zhou , Dezhi Yin , Wencheng Huang
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引用次数: 0

摘要

交通运输方式的日益多样化和交通运输网络的快速扩张给多层综合交通运输网络的建模提出了重大挑战。确定聚合某些层是否是平衡复杂性降低和信息保存的可行选择是至关重要的。这一决定定义了分层结构,并为这些网络的后续分析提供了依据。考虑二维因素,即拓扑结构和运输属性,以增强对网络层之间相似性的理解。采用相对熵和基尼指数作为度量指标,评估层聚集或层分离导致的信息增益或损失,指导网络缩减决策。此外,利用基于量子Jensen-Shannon散度和Gower距离的综合相似性度量来识别最优聚合序列。两个现实世界的交通网络作为案例研究。结果表明,分层结构更有效地维护了这些交通网络,保留了最大的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Should the multi-layer transportation network structure be reduced?
The increasing diversity of transportation modes and the rapid expansion of transportation networks present significant challenges for modeling multi-layer comprehensive transportation networks. It is crucial to determine whether aggregating certain layers is a viable option for balancing complexity reduction and information preservation. This decision defines the layered structures and informs subsequent analyses of these networks. Two-dimensional factors, namely topological structures and transportation attributes, are considered to enhance understanding of the similarities among network layers. The relative entropy and the Gini index are employed as metrics to assess information gain or loss resulting from layer aggregation or segregation, guiding decisions on network reduction. Furthermore, an integrated similarity measure, based on the quantum Jensen-Shannon divergence and the Gower distance, is utilized to identify the optimal aggregation sequences. Two real-world transportation networks serve as case studies. Results demonstrate that these transportation networks are more effectively maintained with layer-separated structures, preserving maximum information.
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来源期刊
CiteScore
6.40
自引率
14.30%
发文量
79
审稿时长
>12 weeks
期刊介绍: Transportation Letters: The International Journal of Transportation Research is a quarterly journal that publishes high-quality peer-reviewed and mini-review papers as well as technical notes and book reviews on the state-of-the-art in transportation research. The focus of Transportation Letters is on analytical and empirical findings, methodological papers, and theoretical and conceptual insights across all areas of research. Review resource papers that merge descriptions of the state-of-the-art with innovative and new methodological, theoretical, and conceptual insights spanning all areas of transportation research are invited and of particular interest.
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