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Secure Communication With a Wireless-Powered Friendly Jammer

机译:使用无线友好干扰器进行安全通信

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In this paper, we propose using a wireless-powered friendly jammer to enable secure communication between a source node and destination node, in the presence of an eavesdropper. We consider a two-phase communication protocol with fixed-rate transmission. In the first phase, wireless power transfer is conducted from the source to the jammer. In the second phase, the source transmits the information-bearing signal under the protection of a jamming signal sent by the jammer using the harvested energy in the first phase. We analytically characterize the long-term behavior of the proposed protocol and derive a closed-form expression for the throughput. We further optimize the rate parameters for maximizing the throughput subject to a secrecy outage probability constraint. Our analytical results show that the throughput performance differs significantly between the single-antenna jammer case and the multiantenna jammer case. For instance, as the source transmit power increases, the throughput quickly reaches an upper bound with single-antenna jammer, while the throughput grows unbounded with multiantenna jammer. Our numerical results also validate the derived analytical results.
机译:在本文中,我们建议使用无线友好干扰器,以在存在窃听程序的情况下实现源节点和目标节点之间的安全通信。我们考虑具有固定速率传输的两阶段通信协议。在第一阶段,无线电力从信号源传输到干扰器。在第二阶段,源在第一阶段使用收集的能量在干扰器发送的干扰信号的保护下发送信息承载信号。我们分析性地描述了所提出协议的长期行为,并导出了吞吐量的闭式表达式。我们进一步优化速率参数,以在受到保密中断概率约束的情况下最大化吞吐量。我们的分析结果表明,单天线干扰器和多天线干扰器的吞吐性能显着不同。例如,随着源发射功率的增加,吞吐量在单天线干扰器的作用下迅速达到上限,而吞吐量在多天线干扰器的作用下无限增长。我们的数值结果也验证了得出的分析结果。

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