Reflective In-Band Full Duplex NOMA Communications for Secure 5G Networks

Rabia Khan, R. Asif
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引用次数: 2

Abstract

In the context of Internet-of-Things (IoT), big Data analytic and the interconnected world, the scientific revolution is increasing the demand for an improved spectrum utilization. An efficient use of the existing spectrum is required for high data-rate transmission. There are several potential ways of solving the challenges of spectrum scarcity. In-Band Full Duplex (IBFD) and Non-Orthogonal Multiple Access (NOMA) are two techniques that can improve the spectral efficiency (SE) in a 5G and Beyond (5GB) cellular networks. This paper proposes a spectral efficient IBFD scheme, Reflective In-Band Full-Duplex (R-IBFD) algorithm for relay selection to improve security of the system with minimum interference. The interference is basically reduced by the addition of orthogonality between the transmitted and received signal in the IBFD mode. The proposed R-IBFD is evaluated with IBFD, Device-to-Device (D2D) and Artificial Noise (AN). Secrecy Outage Probability (SOP) and throughput is analysed for R-IBFD. The simulation results present the comparison between the R-IBFD and conventional decode-and-forward IBFD communication with one or more users operated as a relay.
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用于安全5G网络的反射带内全双工NOMA通信
在物联网、大数据分析和互联世界的背景下,科学革命对提高频谱利用率提出了更高的要求。为了实现高数据速率传输,需要有效地利用现有的频谱。有几种潜在的方法可以解决频谱稀缺的挑战。带内全双工(IBFD)和非正交多址(NOMA)是两种可以提高5G及以上(5GB)蜂窝网络频谱效率(SE)的技术。为了在最小干扰下提高系统的安全性,本文提出了一种频谱高效的IBFD方案——反射带内全双工(R-IBFD)中继选择算法。在IBFD模式下,通过增加发射和接收信号之间的正交性,基本上减少了干扰。提出的R-IBFD通过IBFD、设备到设备(D2D)和人工噪声(AN)进行评估。分析了R-IBFD的保密中断概率(SOP)和吞吐量。仿真结果显示了R-IBFD与传统的一个或多个用户作为中继操作的IBFD通信之间的比较。
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