利用博弈论对抗多通道物联网网络中的干扰攻击

M. Guizani, A. Gouissem, K. Abualsaud, E. Yaacoub, T. Khattab
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引用次数: 6

摘要

干扰攻击是阻止和干扰合法通信的最广泛使用的技术之一。文献中使用了几种技术来对抗这些攻击。然而,其中大多数要么需要增加传输功率,要么需要实施复杂的协调方案,这在资源有限的物联网设备中是不可行的。因此,本文针对具有多个正交频分复用(OFDM)慢衰落信道的健康监测物联网网络设计了一种抗干扰策略。特别是,为了最大限度地减少对物联网传感器通信的最坏干扰效果,模拟了“上校布托”游戏。通过对博弈纳什均衡的分析,提出了一种抗干扰功率分配策略,该策略在不需要额外功率和资源的情况下可以有效地对抗干扰攻击。
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Combating Jamming Attacks in Multi-channel IoT Networks Using Game Theory
Jamming attacks are among the most widely used techniques to block and disturb legitimate communications. Several techniques are used in the literature to combat these attacks. However, most of them either require the increase in transmission power or the implementation of complex coordination schemes which are not feasible in limited resources Internet of Things (IoT) devices. Therefore, in this paper, a defending strategy against jamming attacks is designed for health monitoring IoT networks with multiple Orthogonal frequency-division multiplexing (OFDM) slow fading channels. In particular, minimizing the worst case jamming effect on the IoT sensors communications is modeled as a Colonel Blotto game. By analyzing the Nash Equilibrium (NE) of the game, an anti-jamming power allocating strategy is proposed and is shown to be effective in combating jamming attacks without the need for extra power and resources.
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