Multi-Scale Higher-Order Dependencies (MSHOD): Higher-Order Interactions Mining and Key Nodes Identification for Global Liner Shipping Network

IF 2.7 3区 地球科学 Q1 ENGINEERING, MARINE Journal of Marine Science and Engineering Pub Date : 2024-08-01 DOI:10.3390/jmse12081305
Yude Fu, Xiang Li, Jichao Li, Mengjun Yu, Xiongyi Lu, Qizi Huangpeng, Xiaojun Duan
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Abstract

Liner shipping accounts for over 80% of the global transportation volume, making substantial contributions to world trade and economic development. To advance global economic integration further, it is essential to link the flows of global liner shipping routes with the complex system of international trade, thereby supporting liner shipping as an effective framework for analyzing international trade and geopolitical trends. Traditional methods based on first-order global liner shipping networks, operating at a single scale, lack sufficient descriptive power for multi-variable sequential interactions and data representation accuracy among nodes. This paper proposes an effective methodology termed “Multi-Scale Higher-Order Dependencies (MSHOD)” that adeptly reveals the complexity of higher-order interactions among multi-scale nodes within the global liner shipping network. The key step of this method is to construct high-order dependency networks through multi-scale attributes. Based on the critical role of high-order interactions, a method for key node identification has been proposed. Experiments demonstrate that, compared to other methods, MSHOD can more effectively identify multi-scale nodes with regional dependencies. These nodes and their generated higher-order interactions could have transformative impacts on the network’s flow and stability. Therefore, by integrating multi-scale analysis methods to mine high-order interactions and identify key nodes with regional dependencies, this approach provides robust insights for assessing policy implementation effects, preventing unforeseen incidents, and revealing regional dual-circulation economic models, thereby contributing to strategies for global, stable development.
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多尺度高阶依赖性 (MSHOD):全球班轮航运网络的高阶交互挖掘与关键节点识别
班轮航运占全球运输量的 80% 以上,为世界贸易和经济发展做出了巨大贡献。要进一步推进全球经济一体化,就必须将全球班轮航线流量与复杂的国际贸易体系联系起来,从而支持班轮航运成为分析国际贸易和地缘政治趋势的有效框架。基于一阶全球班轮航运网络的传统方法在单一尺度上运行,对节点间的多变量序列互动和数据表示精度缺乏足够的描述力。本文提出了一种名为 "多尺度高阶依存关系(MSHOD)"的有效方法,它能巧妙地揭示全球班轮航运网络中多尺度节点间高阶互动的复杂性。该方法的关键步骤是通过多尺度属性构建高阶依赖网络。基于高阶互动的关键作用,提出了一种关键节点识别方法。实验证明,与其他方法相比,MSHOD 能更有效地识别具有区域依赖性的多尺度节点。这些节点及其产生的高阶相互作用可能会对网络的流量和稳定性产生变革性影响。因此,通过整合多尺度分析方法来挖掘高阶互动并识别具有区域依赖性的关键节点,该方法可为评估政策实施效果、预防意外事件和揭示区域双循环经济模式提供有力的见解,从而为全球稳定发展战略做出贡献。
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来源期刊
Journal of Marine Science and Engineering
Journal of Marine Science and Engineering Engineering-Ocean Engineering
CiteScore
4.40
自引率
20.70%
发文量
1640
审稿时长
18.09 days
期刊介绍: Journal of Marine Science and Engineering (JMSE; ISSN 2077-1312) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to marine science and engineering. It publishes reviews, research papers and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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