基于遗传算法的无线传感器网络安全态势感知

J. Sensors Pub Date : 2022-08-18 DOI:10.1155/2022/8292920
Jinna Zhang
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引用次数: 0

摘要

如何设计一种适用于复杂无线传感器网络环境的有效、安全的用户认证方案具有十分重要的研究意义。基于遗传算法理论,构建了无线传感器网络的安全态势感知模型,研究了WSN用户安全认证方案。该模型采用遗传算法提取技术结合哈希函数生成生物特征密钥,解决了网络安全态势感知的数据准确性问题:通过模糊提取技术获得用户的生物特征密钥;节点的抵抗力是被攻击的,但当大多数节点被破坏时,它是无能为力的,并且它限制了网络的可扩展性。在仿真过程中,在拓扑建立阶段增加了基站对簇头身份的认证,在密钥管理中增加了单向哈希函数和共享密钥,使加密密钥和认证密钥定期动态变化,增强了网络通信的安全性。分析结果表明,该方案是可行的。本文提出的算法减少了原始特征集中约70%的特征,分类检测率从95.7212%提高到97.7379%,虚警率从7.9427%降低到3.1072%,有效地提高了安全性与设计成本之间的平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Network Security Situational Awareness Based on Genetic Algorithm in Wireless Sensor Networks
How to design an effective and secure user authentication scheme suitable for complex wireless sensor network (WSN) environments has very important research significance. Based on the genetic algorithm theory, the paper constructs the security situational awareness model of wireless sensor network, and studies the WSN user security authentication scheme. The model uses the genetic algorithm extraction technology combined with the hash function to generate the biometric key, which solves the data accuracy problem of network security situational awareness: the user’s biometric key is obtained through the fuzzy extraction technology; the resistance of the node is to be attacked, but it is powerless when most of the nodes are broken, and it limits the scalability of the network. During the simulation process, the authentication of the identity of the cluster head by the base station is added in the topology establishment stage, and a one-way hash function and a shared key are added to the key management, so that the encryption key and the authentication key change periodically and dynamically, so that enhanced network communication security. The analysis results show that the protocol is feasible. The algorithm proposed in this paper reduces about 70% of the features in the original feature set, the classification detection rate is increased from 95.7212% to 97.7379%, and the false alarm rate is reduced from 7.9427% to 3.1072%, effectively improving the balance between safety and design cost.
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