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Analysis on Invulnerability of Wireless Sensor Network towards Cascading Failures Based on Coupled Map Lattice

机译:基于耦合地图格的无线传感器网络级联故障的无损性分析

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Previous research of wireless sensor networks (WSNs) invulnerability mainly focuses on the static topology, while ignoring the cascading process of the network caused by the dynamic changes of load. Therefore, given the realistic features of WSNs, in this paper we research the invulnerability of WSNs with respect to cascading failures based on the coupled map lattice (CML). The invulnerability and the cascading process of four types of network topologies (i.e., random network, small-world network, homogenous scale-free network, and heterogeneous scale-free network) under various attack schemes (i.e., random attack, max-degree attack, and max-status attack) are investigated, respectively. The simulation results demonstrate that the rise of interference and coupling coefficient will increase the risks of cascading failures. Cascading threshold values and exist, where cascading failures will spread to the entire network when or . When facing a random attack or max-status attack, the network with higher heterogeneity tends to have a stronger invulnerability towards cascading failures. Conversely, when facing a max-degree attack, the network with higher uniformity tends to have a better performance. Besides that, we have also proved that the spreading speed of cascading failures is inversely proportional to the average path length of the network and the increase of average degree can improve the network invulnerability.
机译:先前对无线传感器网络(WSNs)的无害性研究主要集中在静态拓扑上,而忽略了由负载的动态变化引起的网络级联过程。因此,考虑到无线传感器网络的现实特征,本文基于耦合映射网格(CML)研究了无线传感器网络在级联故障方面的无损性。在各种攻击方案(即随机攻击,最大程度攻击)下,四种类型的网络拓扑结构(即随机网络,小世界网络,同质无标度网络和异构无标度网络)的无损性和级联过程,和max-status攻击)。仿真结果表明,干扰和耦合系数的增加将增加级联故障的风险。存在级联阈值,当或时,级联故障将扩散到整个网络。面对随机攻击或最大状态攻击时,异构性较高的网络往往具有较强的针对级联故障的抵抗力。相反,当面临最大程度的攻击时,具有较高一致性的网络往往具有更好的性能。除此之外,我们还证明了级联故障的传播速度与网络的平均路径长度成反比,并且平均程度的增加可以改善网络的无损性。

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