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Secure transmission in spectrum-sharing cognitive networks with wireless power transfer

机译:通过无线电力传输在共享频谱的认知网络中安全传输

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In this paper, secure communication for RF-powered cognitive networks has been investigated in which the secondary source (SS) transmits confidential information to the destination (SD) using the harvested energy form primary transmitter (PT) in the presence of a passive eavesdropper (SE). Note that the transmission power at the SS is subject to two important constraint: 1) the maximum transmission power at the SS determined by the harvested energy, 2) the peak interference power permitted at the primary receiver (PR). In order to obtain practical design insights into the reliability and security performance, we derive expressions of the connection outage probability, the secrecy outage probability, the transmission outage probability. We also derive the secrecy throughput i.e., the achievable secrecy rate at which the confidential messages are reliably and securely transmitted from the SS to the SD, to evaluate the overall performance of the RF-powered cognitive network. The numerical results provides insights into the effect of various system parameters, such as time splitting factor, transmitter power of primary user and the peak interference power threshold.
机译:在本文中,已经研究了用于射频供电的认知网络的安全通信,其中,在无源窃听者存在的情况下,次要源(SS)使用从主发射机(PT)收集的能量将机密信息传输到目的地(SD)。 SE)。请注意,SS处的发射功率受到两个重要约束:1)SS处的最大发射功率由所收集的能量确定; 2)主接收器(PR)允许的峰值干扰功率。为了获得对可靠性和安全性性能的实用设计见解,我们导出了连接中断概率,保密中断概率,传输中断概率的表达式。我们还导出了保密吞吐量,即可达到的保密率,在该速率下,机密消息被可靠,安全地从SS传输到SD,以评估RF供电的认知网络的整体性能。数值结果提供了对各种系统参数的影响的见解,例如时间分割因子,主要用户的发射机功率和峰值干扰功率阈值。

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