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Protecting Secret Key Generation Systems Against Jamming: Energy Harvesting and Channel Hopping Approaches

机译:保护秘密密钥生成系统不受干扰:能量收集和信道跳变方法

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Jamming attacks represent a critical vulnerability for wireless secret key generation (SKG) systems. In this paper, two counter-jamming approaches are investigated for SKG systems: first, the employment of energy harvesting (EH) at the legitimate nodes to turn part of the jamming power into useful communication power, and, second, the use of channel hopping or power spreading in block fading channels to reduce the impact of jamming. In both cases, the adversarial interaction between the pair of legitimate nodes and the jammer is formulated as a two-player zero-sum game and the Nash and Stackelberg equilibria are characterized analytically and in closed form. In particular, in the case of EH receivers, the existence of a critical transmission power for the legitimate nodes allows the full characterization of the game's equilibria and also enables the complete neutralization of the jammer. In the case of channel hopping versus power spreading techniques, it is shown that the jammer's optimal strategy is always power spreading while the legitimate nodes should only use power spreading in the high signal-to-interference ratio (SIR) regime. In the low SIR regime, when avoiding the jammer's interference becomes critical, channel hopping is optimal for the legitimate nodes. Numerical results demonstrate the efficiency of both counter-jamming measures.
机译:干扰攻击是无线密钥生成(SKG)系统的关键漏洞。本文针对SKG系统研究了两种抗干扰方法:首先,在合法节点使用能量收集(EH)将部分干扰功率转换为有用的通信功率,其次,使用信道跳变或在衰落信道中扩展功率,以减少干扰的影响。在这两种情况下,一对合法节点和干扰者之间的对抗性互动都被表述为两人零和博弈,并且纳什和斯塔克尔贝格均衡的特征是分析性和封闭式。特别是在EH接收器的情况下,合法节点的关键传输功率的存在可以充分表征游戏的平衡性,并且可以完全消除干扰。在信道跳变与功率扩展技术的情况下,表明干扰器的最佳策略始终是功率扩展,而合法节点应仅在高信噪比(SIR)情况下使用功率扩展。在低SIR体制下,当避免干扰源的干扰变得至关重要时,对于合法节点而言,信道跳频是最佳的。数值结果证明了两种抗干扰措施的效率。

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