基于无人机的全双工中继NOMA系统的物理层安全

Thanh Trung Nguyen, V. T. Hoang, T. T. Huyen Le, X. Tran
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引用次数: 3

摘要

本文研究了基于无人机的全双工(FD)中继非正交多址(NOMA)系统在Nakagami-m衰落信道上的保密性能。在地面内部窃听器(E)存在的情况下,移动无人机充当空中中继站(ARS),协助从一个源(S)传输到两个用户(D1, D2)。为了确保用户的安全通信,我们建议在全双工ARS (FD-ARS)的发射信号中插入人工噪声(an)组件,并使用NOMA协议分配功率。分析了系统和用户在不同传播环境下的保密中断性能,得到了密集城市、城市和郊区环境下的近似保密中断概率(SOP)。结果表明,使用AN可以使用户在信噪比上实现保密性。当FD-ARS距离远端用户较近时,系统的保密性能最佳,而当FD-ARS距离源较近时,系统失去保密性能。FD-ARS系统比相应的半双工(HD) ARS系统具有更好的保密性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical Layer Security for UAV-Based Full-Duplex Relay NOMA System
In this paper, we investigate the secrecy performance of an unmanned aerial vehicle (UAV)-based full-duplex (FD) relay non-orthogonal multiple access (NOMA) system over the Nakagami-m fading channel. A mobile UAV acts as an aerial relay station (ARS) to assist transmission from a source (S) to two users (D1, D2), in the presence of a ground internal eavesdropper (E). To ensure secure communication at users, we propose to insert an artificial noise (AN) component into the transmit signal at the full-duplex ARS (FD-ARS) with power allocated using the NOMA protocol. We analyze the secrecy outage performance of the system and the users and obtain the approximate secrecy outage probability (SOP) in various propagation environments, i.e., the dense urban, urban and suburban environments. It is demonstrated that using AN allows the users to achieve the secrecy over the signal-to-noise ratio. Also, the system achieves the best secrecy performance when the FD-ARS is closer to the further user while losing the secrecy when closer to the source. The FD-ARS system is shown to achieve better secrecy performance than the respective half-duplex (HD) ARS system.
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