使用MIMO系统的现实底层认知无线网络的EH和TAS保密中断性能

M. Khodeir, Saja M. Alquran
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引用次数: 5

摘要

本文研究了多输入多输出(MIMO)辅助节点的物理层安全性能。所提出的模型假定在底层认知无线网络(CRN)中运行,该网络包含单个天线的主节点,并且存在主动窃听者。此外,在二次发射机侧采用了发射天线选择(TAS)方案,该方案还具有合适的电池,可以对从主发射机广播的射频(RF)信号收集的能量进行充电,以协同提高功率和频谱效率。二级系统的安全性能是通过在Nakagami-m衰落信道上导出精确的封闭形式短语来实现的。数学结果表明,通过增加窃听源和/或目标天线的数量或减少窃听端天线的数量可以提高安全性能。通过提高源端的发射功率或提高主信道的质量,也可以达到同样的目的。通过选择合适的时隙用于能量收集,可以在二次发射机获得更大的能量收集,进一步提高了安全性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secrecy Outage Performance with EH and TAS for Realistic Underlay Cognitive Radio Networks Using MIMO Systems
This work studies the physical layer security performance for Multiple Input Multiple Output (MIMO) secondary nodes. The proposed model is assumed to operate in underlay Cognitive Radio Network (CRN) that contains a primary node of a single antenna with the presence of an active eavesdropper. Furthermore, Transmit Antenna Selection (TAS) scheme is applied at the secondary transmitter side which also has a suitable battery to charge the energy collected from the Radio Frequency (RF) signals broadcasted from the primary transmitter to enhance collaboratively the power and spectral efficiencies. The security performance for the secondary system is achieved where the exact closed-form phrase is derived over Nakagami-m fading channels. The mathematical results show that the security performance can be improved by increasing the number of the antennas at the source and/or the destination or by decreasing the number of the antennas at the eavesdropper. The same target can be achieved by increasing the transmit power at the source, or improving the quality of the main channel. Greater harvested energy can be obtained at the secondary transmitter by selecting proper time slot that is dedicated for energy harvesting which further improved the security performance.
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