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首页> 外文期刊>IEEE transactions on wireless communications >Security-Reliability Trade-Off Analysis for Multiuser SIMO Mixed RF/FSO Relay Networks With Opportunistic User Scheduling
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Security-Reliability Trade-Off Analysis for Multiuser SIMO Mixed RF/FSO Relay Networks With Opportunistic User Scheduling

机译:具有机会用户调度的多用户SIMO混合RF / FSO中继网络的安全可靠性折衷分析

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摘要

In this paper, we study the performance of multiuser single-input multiple-output mixed radio frequency (RF)/free space optical (FSO) relay network with opportunistic user scheduling. The considered system includes multiple users, one amplify-and-forward relay, one destination, and a multipleantenna eavesdropper. The users are connected with the relay node through RF links and the relay is connected with the destination through an FSO link. Both maximum ratio combining and selection combining schemes are used at the multipleantenna relay to combine the signal received from the best user on different antennas. The RF/FSO channels models are assumed to follow Nakagami-m/gamma-gamma fading models with pointing errors. Closed-form expressions are derived for the outage probability, average symbol error probability, and ergodic channel capacity. Then, the power of the selected best user is determined to minimize the system asymptotic outage probability under the dominant RF or FSO link. Then, the considered system secrecy performance is investigated, where the closedform expressions for the intercept probability are derived. Finally, we propose a new cooperative jamming model in which the worst user is selected by the authorized system to jam the existing eavesdropper. Monte-Carlo simulations are provided to validate the achieved exact and asymptotic results.
机译:本文研究机会用户调度的多用户单输入多输出混合射频(RF)/自由空间光(FSO)中继网络的性能。所考虑的系统包括多个用户,一个放大转发中继,一个目的地和一个多天线窃听器。用户通过RF链路与中继节点相连,而中继通过FSO链路与目的地相连。最大比合并和选择合并方案都在多天线中继中使用,以合并从最佳用户接收到的不同天线上的信号。假定RF / FSO信道模型遵循具有指向误差的Nakagami-m / gamma-gamma衰落模型。得出停机概率,平均符号错误概率和遍历信道容量的封闭式表达式。然后,确定选定的最佳用户的能力,以使在主导RF或FSO链路下的系统渐进中断概率最小化。然后,研究了考虑的系统保密性能,在此导出了截获概率的闭式表达式。最后,我们提出了一种新的协作干扰模型,其中授权系统选择了最差的用户来干扰现有的窃听者。提供蒙特卡洛模拟以验证所获得的精确和渐近结果。

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