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TMSE: A topology modification strategy to enhance the robustness of scale-free wireless sensor networks

机译:TMSE:拓扑修改策略,提升无规模无线传感器网络的稳健性

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Scale-free wireless sensor networks (WSNs) are tolerant to random attacks but vulnerable to malicious attacks. With the increase of cyber-attacks, improving the survivability and robustness is critical to scale-free WSNs. This paper introduces a scale-free topology evolution mechanism (SFTEM) for WSNs, and the evolution model considers the fault probability of nodes as well as the communication range. Then, a new topology modification strategy for enhancing the robustness of scale-free WSNs is presented, namely TMSE. Different from previous works, we consider different types of malicious attack into the algorithm design, making the TMSE more resistant to realistic attacks. Besides, TMSE consists of two operations, in which the high degree operation (HDO) changes the network connections among high degree nodes base on the probability of being attacked, and the degree associativity operation (DAO) transforms the network topology into the onion-like structure using its degree-degree correlation. Meanwhile, all the nodes modified by TMSE maintain the node degree, thus the final topology preserves scale-free properties. Simulation results demonstrate that the network topology generated by SFTEM has the scale-free characteristics, and its robustness can be effectively improved by TMSE, compared to the existing algorithms.
机译:无垢无线传感器网络(WSN)对随机攻击宽容,但容易受恶意攻击。随着网络攻击的增加,提高生存能力和鲁棒性对于无垢WSN至关重要。本文介绍了用于WSN的无缝拓扑演化机制(SFTEM),Evolution模型考虑节点的故障概率以及通信范围。然后,提出了一种新的拓扑修改策略,用于增强无规模的WSN的鲁棒性,即TMSE。与以前的作品不同,我们将不同类型的恶意攻击视为算法设计,使TMSE更耐用地攻击。此外,TMSE由两个操作组成,其中高度操作(HDO)在攻击概率上改变高度节点之间的网络连接,以及学位关联操作(DAO)将网络拓扑变换为洋葱状结构使用其学位相关性。同时,通过TMSE修改的所有节点都维持节点度,因此最终拓扑保留了无垢的属性。模拟结果表明,与现有算法相比,SFTEM产生的网络拓扑具有无垢特性,并且通过TMSE可以有效地提高其鲁棒性。

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