Secrecy outage probability in cognitive radio networks subject to Rayleigh fading channels

Mounia Bouabdellah, Faissal El Bouanani, H. Ben-Azza
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引用次数: 11

Abstract

Wireless communication systems are vulnerable to eavesdropping attack in which the attacker overhear the transmitted data in the network. Hence, the physical-layer security is of utmost importance to protect the wireless communications against the eavesdropping attack. In this paper, we study the physical-layer security of a two-hops cognitive radio-based communication system where the secondary user sends some confidential information to a destination through a relay. This relay is assumed to be equipped with multiple antennas for reception, applies the maximum-ratio combining technique for the received signals, and uses only one antenna to forward the combined signal to the destination. The transmission is performed under the eavesdropper's attempt to listen to the communication channel. The secrecy outage probability and the intercept probability are both derived based on the statistical characteristics of the channels and under the constraint of avoiding the communication outage of the primary user. All results have been validated using Monte Carlo method.
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瑞利衰落信道下认知无线网络的保密中断概率
无线通信系统容易受到窃听攻击,攻击者可以窃听网络中传输的数据。因此,保护无线通信免受窃听攻击的物理层安全至关重要。本文研究了一种基于两跳认知无线电通信系统的物理层安全问题,该系统中二级用户通过中继将机密信息发送到目的地。该中继假定有多根天线进行接收,对接收到的信号采用最大比合并技术,仅用一根天线将合并后的信号转发到目的地。在窃听者试图监听通信信道的情况下进行传输。在避免主用户通信中断的约束下,根据信道的统计特性推导出保密中断概率和拦截概率。所有结果都用蒙特卡罗方法进行了验证。
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