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首页> 外文期刊>Advances in complex systems >IMPROVING RESILIENCE OF COMPLEX NETWORKS FACING ATTACKS AND FAILURES THROUGH ADAPTIVE MECHANISMS
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IMPROVING RESILIENCE OF COMPLEX NETWORKS FACING ATTACKS AND FAILURES THROUGH ADAPTIVE MECHANISMS

机译:通过自适应机制提高面对攻击和失败的复杂网络的弹性

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摘要

Studies have revealed that some topological properties of complex networks are robust to random node failures, but highly sensitive to failures in nodes of high centrality (i.e., attacks). This work proposes mechanisms based on local information for detecting vulnerable network configurations and for promoting changes in the topology to mitigate the impact on network connectivity of successive node losses due to attacks and failures. Two scenarios were evaluated: with maintenance of the number of links in the network, and with the creation of new links. For the first case, we show that the removal of the most central nodes affects networks in such a way that is also difficult to preserve their main topological properties, although improvement in the values of global efficiency at the expense of a reduction of the local efficiency was observed. For the second scenario, there was a significant decrease in the impact from attacks and failures. Notably, for failures the connectivity properties not only remained almost unchanged, but in some cases considerably increased, thus improving the overall network performance. The results were also verified in some benchmark real-network topologies, and a comparative performance evaluation with a random self-regenerating process was also analyzed. The study demonstrates the importance and feasibility of local adaptation mechanisms for link rewiring based on the concept of vulnerability.
机译:研究表明,复杂网络的某些拓扑特性对随机节点故障具有鲁棒性,但对高度集中的节点(即攻击)中的故障高度敏感。这项工作提出了一种基于本地信息的机制,用于检测易受攻击的网络配置并促进拓扑结构的更改,以减轻由于攻击和故障而导致的连续节点丢失对网络连接的影响。评估了两种情况:维护网络中的链接数量,以及创建新链接。对于第一种情况,我们表明移除最中心的节点会以同样难以维护其主要拓扑属性的方式影响网络,尽管提高了全局效率的值却以降低局部效率为代价被观测到。对于第二种情况,攻击和故障的影响显着减少。值得注意的是,对于故障,连接属性不仅几乎保持不变,而且在某些情况下大大增加,从而提高了整体网络性能。还在一些基准真实网络拓扑中验证了结果,并且还分析了具有随机自再生过程的比较性能评估。这项研究证明了基于脆弱性概念的本地适应机制对于链路重新布线的重要性和可行性。

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