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Physical layer security in cognitive radio networks: A beamforming approach

机译:认知无线电网络中的物理层安全性:波束成形方法

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The unguided transmission nature of wireless communication channels in cognitive radio networks (CRNs) makes it easier for attackers to gather transmitted data or to avoid transmissions when compared to traditional wired systems. Furthermore, the shared spectrum concept may lead to various security threats and misusages, especially in the physical (PHY) layer with attacks such as primary user emulation and spectrum sensing data falsification. In this paper, the common PHY layer attacks are introduced from CRN perspective with the corresponding detection techniques and countermeasures. A correlation based trust factor is defined to identify attacks in CRNs, and a beamforming approach is proposed for their prevention. An optimization problem is defined to determine the beamforming coefficients that minimize the success of especially the spectrum sensing data falsification attack. The performance of the proposed method is compared with non-optimized techniques in different channel conditions and proven to be an efficient countermeasure by simulation results.
机译:与传统的有线系统相比,认知无线电网络(CRN)中无线通信信道的不受引导的传输特性使攻击者更容易收集传输的数据或避免传输。此外,共享频谱概念可能会导致各种安全威胁和滥用,尤其是在物理(PHY)层受到诸如主要用户仿真和频谱感知数据伪造等攻击的情况下。本文从CRN的角度介绍了常见的PHY层攻击以及相应的检测技术和对策。定义了一个基于相关性的信任因子来识别CRN中的攻击,并提出了一种波束成形方法来防止此类攻击。定义了一个优化问题来确定使尤其是频谱感测数据篡改攻击的成功最小化的波束成形系数。将该方法的性能与不同信道条件下的非优化技术进行了比较,并通过仿真结果证明是一种有效的对策。

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