Structural Robustness of Complex Networks: A Survey of A Posteriori Measures[Feature]

IF 5.6 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Yang Lou, Lin Wang, Guanrong Chen
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引用次数: 7

Abstract

Network robustness is critical for various industrial and social networks against malicious attacks, which has various meanings in different research contexts and here it refers to the ability of a network to sustain its functionality when a fraction of the network fail to work due to attacks. The rapid development of complex networks research indicates special interest and great concern about the network robustness, which is essential for further analyzing and optimizing network structures towards engineering applications. This comprehensive survey distills the important findings and developments of network robustness research, focusing on the a posteriori structural robustness measures for single-layer static networks. Specifically, the a posteriori robustness measures are reviewed from four perspectives: 1) network functionality, including connectivity, controllability and communication ability, as well as their extensions; 2) malicious attacks, including conventional and computation-based attack strategies; 3) robustness estimation methods using either analytical approximation or machine learning-based prediction; 4) network robustness optimization. Based on the existing measures, a practical threshold of network destruction is introduced, with the suggestion that network robustness should be measured only before reaching the threshold of destruction. Then, a posteriori and a priori measures are compared experimentally, revealing the advantages of the a posteriori measures. Finally, prospective research directions with respect to a posteriori robustness measures are recommended.
复杂网络的结构鲁棒性:后验测度综述[特征]
网络鲁棒性对于各种工业和社交网络抵御恶意攻击至关重要,这在不同的研究背景下具有不同的含义,在这里,它指的是当一小部分网络因攻击而无法工作时,网络维持其功能的能力。复杂网络研究的快速发展表明了人们对网络鲁棒性的特殊兴趣和高度关注,这对于进一步分析和优化工程应用中的网络结构至关重要。这项全面的调查提炼了网络鲁棒性研究的重要发现和发展,重点是单层静态网络的后验结构鲁棒性度量。具体来说,从四个角度回顾了后验鲁棒性度量:1)网络功能,包括连接性、可控性和通信能力,以及它们的扩展;2) 恶意攻击,包括传统的和基于计算的攻击策略;3) 使用分析近似或基于机器学习的预测的鲁棒性估计方法;4) 网络鲁棒性优化。在现有措施的基础上,引入了一个实用的网络破坏阈值,并建议只有在达到破坏阈值之前才能测量网络鲁棒性。然后,对后验测量和先验测量进行了实验比较,揭示了后验测量的优点。最后,建议了关于后验稳健性度量的前瞻性研究方向。
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来源期刊
IEEE Circuits and Systems Magazine
IEEE Circuits and Systems Magazine 工程技术-工程:电子与电气
CiteScore
9.30
自引率
1.40%
发文量
34
审稿时长
>12 weeks
期刊介绍: The IEEE Circuits and Systems Magazine covers the subject areas represented by the Society's transactions, including: analog, passive, switch capacitor, and digital filters; electronic circuits, networks, graph theory, and RF communication circuits; system theory; discrete, IC, and VLSI circuit design; multidimensional circuits and systems; large-scale systems and power networks; nonlinear circuits and systems, wavelets, filter banks, and applications; neural networks; and signal processing. Content also covers the areas represented by the Society technical committees: analog signal processing, cellular neural networks and array computing, circuits and systems for communications, computer-aided network design, digital signal processing, multimedia systems and applications, neural systems and applications, nonlinear circuits and systems, power systems and power electronics and circuits, sensors and micromaching, visual signal processing and communication, and VLSI systems and applications. Lastly, the magazine covers the interests represented by the widespread conference activity of the IEEE Circuits and Systems Society. In addition to the technical articles, the magazine also covers Society administrative activities, as for instance the meetings of the Board of Governors, Society People, as for instance the stories of award winners-fellows, medalists, and so forth, and Places reached by the Society, including readable reports from the Society's conferences around the world.
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