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Relay Selection for Security Improvement in Cognitive Radio Networks with Energy Harvesting

机译:能源收集认知无线电网络安全改进的继电器选择

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This paper selects an unlicensed relay among available self-powered relays to not only remain but also secure information transmission from an unlicensed source to an unlicensed destination. The relays harvest energy in signals of the unlicensed source and the licensed transmitter. Then, they spend the harvested energy for their relaying operation. Conditioned on the licensed outage restriction, the peak transmission power restriction, Rayleigh fading, and the licensed interference, the current paper proposes an exact closed-form formula of the secrecy outage probability to quickly evaluate the secrecy performance of the proposed relay selection method in cognitive radio networks with energy harvesting. The proposed formula is corroborated by computer simulations. Several results illustrate the effectiveness of the relay selection in securing information transmission. Additionally, the security capability is saturated at large peak transmission powers or large preset outage probabilities of licensed users. Furthermore, the security capability depends on many specifications among which the power splitting ratio, the relays’ positions, and the time switching ratio can be optimally selected to obtain the best security performance.
机译:本文在可用的自动继电器中选择未经许可的继电器,不仅留下,而且还可以将信息传输从未经许可的源传输到未经许可的目的地。继电器收集了未许可源和许可发射器的信号中的能量。然后,他们将收获的能量花在继承操作中。在许可的中断限制,峰值传输功率限制,瑞利衰落和许可干扰上的条件,本文提出了一种精确的闭合形式的保密性中断概率,以快速评估所提出的继电器选择方法在认知中的保密性能具有能量收集的无线电网络。通过计算机模拟证实了所提出的公式。有几个结果说明了中继选择在保护信息传输方面的有效性。此外,安全性能力在大峰值传输功率或许可用户的大预设中断概率饱和。此外,安全能力取决于许多规格其中功率分束比,继电器位,和时间切换比可以最佳地选择以获得最佳的安全性能。

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