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Secrecy capacity of a Nakagami-m fading channel in the presence of cooperative eavesdroppers

机译:有合作窃听者存在的Nakagami-m衰落信道的保密容量

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Physical layer security helps enormously cryptography to improve the confidentiality of communications over wireless networks. Indeed, the secrecy capacity is used at the physical layer to ensure not only the security of communications but also to exploit efficiently the channel capacity. The principle of secrecy capacity is to characterize the maximum data transmission rate, that can be reached while the exchanged information is kept secret from a malicious entity. In this paper, we present a closed-form expression of outage probability and we specify the outage secrecy capacity of a Nakagami-m fading channel in the presence of cooperative correlated eavesdroppers performing the maximal ratio combining which helps the eavesdroppers to tap the maximum of the exchanged information between the transmitter and the legitimate receiver. Simulations results show that a raise in the number of the cooperative eavesdroppers degrades significantly the secrecy capacity of this communication system, moreover the correlation degree between the eavesdroppers has a negative impact on the communication confidentiality especially when it takes small values.
机译:物理层安全性极大地帮助了加密,以提高无线网络上通信的机密性。实际上,保密容量用于物理层,不仅可以确保通信的安全性,还可以有效地利用信道容量。保密容量的原理是表征最大数据传输速率,该数据传输速率是在将所交换的信息对恶意实体保密的同时可以达到的。在本文中,我们给出了中断概率的封闭形式,并指定了在存在相关关联的窃听者进行最大比率合并的情况下,Nakagami-m衰落信道的中断保密能力,这有助于窃听者最大程度地利用窃听者的最大秘密。在发送方和合法接收方之间交换信息。仿真结果表明,协作窃听者数量的增加大大降低了该通信系统的保密能力,而且窃听者之间的相关程度对通信机密性有负面影响,尤其是当窃听者取小值时。

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