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Analysis of Network Robustness in Weighted and Unweighted Approaches: A Case Study of the Air Transport Network in the Belt and Road Region

机译:加权和未加权方法网络鲁棒性分析 - 以腰带和路径空运网络为例

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Aviation transport is one of the most important and critical infrastructures in today’s global economy. Failure in its proper operations can seriously impact regional economic development, which is why it is important to evaluate network robustness. Previous analyses of robustness have mainly been conducted with an unweighted approach. In the development of air transport, however, the demand for route configuration has gradually decreased, while the demand for flight adjustments has increased. Consequently, the aviation network has developed unevenly, so adhering to a uniform approach for evaluating network robustness may lead to inaccurate results. Therefore, we examined which centrality sequence is the most sensitive to network robustness in both unweighted and weighted approaches. The air transport network selected for the case study comprised the six subregions of the Eurasian landmass of the Belt and Road region. The study results showed the following: (a) in the network constructed as an unweighted one, betweenness, and degree centrality had higher priorities in preserving network functionalities than eigenvector and closeness centrality; (b) in the network constructed as a weighted one, recursive power had a higher priority in preserving network functionalities than recursive centrality; and (c) no particular centrality measurement had a significant advantage in representing the totality of robustness. The betweenness centrality sequence was sensitive to the average shortest path length and global efficiency; the recursive power sequence was sensitive to the clustering coefficient, while degree centrality was sensitive to graph diversity. The findings of this study support the decisions about managing air transportation in the Belt and Road region.
机译:航空运输是当今全球经济中最重要和最重要的基础设施之一。失败的运作可能会严重影响区域经济发展,这就是为什么评估网络稳健性很重要。以前的稳健性分析主要是用未加权的方法进行的。然而,在航空运输的发展中,对路线配置的需求逐渐减少,而飞行调整需求增加。因此,航空网络已经不均匀地发展,因此遵守评估网络稳健性的统一方法可能导致结果不准确。因此,我们检查了哪些中心序列对两种未加权和加权方法中的网络稳健性最敏感。为案例研究选择的航空运输网络包括欧亚陆地土地的六个次区域,腰带和道路区。研究结果表明:(a)在网络中构建为一个未加权的,之间的中等程度和程度的中心,在保护网络功能方面具有更高的优先级,而不是特征向量和密闭中心; (b)在网络中构建为加权的网络中,递归功率在保留网络功能方面具有比递归中心的更高优先级; (c)没有特别的中心测量在代表鲁棒性的总体上具有显着的优势。中心中心序列对平均最短路径长度和全球效率敏感;递归功率序列对聚类系数敏感,而程度中心性对图形多样性敏感。这项研究的调查结果支持关于在皮带和道路区域管理空中运输的决定。

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