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A Game-Theoretic Response Strategy for Coordinator Attack in Wireless Sensor Networks

机译:无线传感器网络中协调器攻击的博弈响应策略

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摘要

The coordinator is a specific node that controls the whole network and has a significant impact on the performance in cooperative multihop ZigBee wireless sensor networks (ZWSNs). However, the malicious node attacks coordinator nodes in an effort to waste the resources and disrupt the operation of the network. Attacking leads to a failure of one round of communication between the source nodes and destination nodes. Coordinator selection is a technique that can considerably defend against attack and reduce the data delivery delay, and increase network performance of cooperative communications. In this paper, we propose an adaptive coordinator selection algorithm using game and fuzzy logic aiming at both minimizing the average number of hops and maximizing network lifetime. The proposed game model consists of two interrelated formulations: a stochastic game for dynamic defense and a best response policy using evolutionary game formulation for coordinator selection. The stable equilibrium best policy to response defense is obtained from this game model. It is shown that the proposed scheme can improve reliability and save energy during the network lifetime with respect to security.
机译:协调器是一个控制整个网络的特定节点,对协作多跳ZigBee无线传感器网络(ZWSN)的性能产生重大影响。但是,恶意节点会攻击协调器节点,以浪费资源并破坏网络的运行。攻击导致源节点和目标节点之间的一轮通信失败。协调器选择是一种可以显着防御攻击并减少数据传递延迟并提高协作通信的网络性能的技术。在本文中,我们提出了一种使用博弈和模糊逻辑的自适应协调器选择算法,旨在最小化平均跳数并最大化网络寿命。所提出的博弈模型包括两个相互关联的公式:用于动态防御的随机博弈和使用进化博弈公式进行协调员选择的最佳响应策略。从该博弈模型中获得了针对防御的稳定均衡最佳策略。结果表明,所提出的方案在安全性方面可以提高网络寿命期间的可靠性并节省能量。

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