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A Differential Game Approach to Mitigating Primary User Emulation Attacks in Cognitive Radio Networks

机译:缓解认知无线电网络中主要用户仿真攻击的差分博弈方法

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In cognitive radio networks, primary user emulation (PUE) attack is a denial-of-service (DoS) attack on secondary users. It means that a malicious attacker sends primary-user-like signals to jam certain spectrum channels during the spectrum sensing period. Sensing the attacker's signal, the legitimate secondary user will regard these channels are used by the primary users, and give up using these attacked channels. In this paper, the interaction between the PUE attacker and the secondary user is modeled as a constant sum differential game which is called PUE attak game. The secondary user's objective is to find the optimal sensing strategy so as to maximize its overall channel usability, while the attacker's objective is to minimize the secondary user's overall channel usability. The Nash equilibrium solution of this PUE attack game is deprived, and the optimal anti-PUE attack strategy is obtained. Numerical results demonstrate the trajectories of the secondary user's optimal channel sensing strategies over time, and also shows that: by following the differential game solution, the secondary user can always optimize its channel usability when confronting PUE attacks.
机译:在认知无线电网络中,主要用户仿真(PUE)攻击是对次要用户的拒绝服务(DoS)攻击。这意味着恶意攻击者会在频谱感知期间发送类似主用户的信号来阻塞某些频谱信道。合法的次要用户感知到攻击者的信号后,会认为这些通道已被主要用户使用,并放弃了使用这些被攻击的通道。在本文中,PUE攻击者与二级用户之间的交互被建模为一个常数和差分游戏,称为PUE attak游戏。次要用户的目标是找到最佳的感知策略,从而最大化其总体渠道可用性,而攻击者的目标是使次要用户的总体渠道可用性最小。剥夺了该PUE攻击博弈的纳什均衡解,得到了最优的抗PUE攻击策略。数值结果证明了次要用户的最佳信道感知策略随时间变化的轨迹,并且还表明:通过遵循差分博弈解决方案,次要用户在面对PUE攻击时始终可以优化其信道可用性。

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