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A single iteration belief propagation algorithm to minimize the effects of primary user emulation attacks

机译:单次迭代信仰传播算法,以最大限度地减少主用户仿真攻击的影响

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This paper presents a method to alleviate the effects of primary user emulation attacks in cognitive radio (CR) networks. The proposed method uses a simplified belief propagation (BP) algorithm that is able to identify whether a transmitter is a legitimate primary user or an attacker. In a primary user emulation attack (PUEA) a transmitter impersonates a primary user (PU) in order to deceive secondary users (SU) into believing that a channel is occupied. As a result, secondary users must vacate the channel immediately. This paper presents a simplified belief propagation method as a defence strategy against primary user emulation attacks. In our method each secondary user examines an incoming signal from a transmitter and determines with a certain probability whether the transmitter is a legitimate user or not. This probability is known as the belief. The beliefs at each secondary user are reconciled and a final belief is compared to a predefined threshold. If the final belief is below the threshold, the user is identified as an attacker. If it is above the threshold, the user is deemed a primary user. This result is then propagated throughout the network so that all users on the network are aware of the attacker. In this paper, we present a method based on the belief propagation framework. The proposed method converges in a single iteration; this is the result of a redefined messaging protocol and a simplified belief equation. As a result, the computational complexity of the method is reduced significantly, while still maintaining a high level of accuracy.
机译:本文介绍了一种缓解认知无线电(CR)网络中主要用户仿真攻击的影响的方法。该方法使用简化信念传播(BP)算法,该算法能够识别发送器是否是合法主用户或攻击者。在主用户仿真攻击(PUEA)中,发射机模拟主用户(PU),以便欺骗二次用户(SU)以相信频道被占用。因此,辅助用户必须立即腾空频道。本文介绍了一种简化的信念传播方法作为针对主要用户仿真攻击的防御策略。在我们的方法中,每个辅助用户从发射机检查传入信号,并用一定概率确定发送器是否是合法用户。这种概率被称为信仰。将每个辅助用户的信件进行协调,并将最终信念与预定义的阈值进行比较。如果最终信仰低于阈值,则用户被识别为攻击者。如果它高于阈值,则用户被视为主用户。然后,该结果在整个网络中传播,以便网络上的所有用户都知道攻击者。在本文中,我们提出了一种基于信仰传播框架的方法。所提出的方法在单一迭代中收敛;这是重新定义消息传递协议的结果和简化信仰方程。结果,该方法的计算复杂性显着降低,同时仍保持高水平的精度。

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