论文标题

安全非正交多访问:干涉工程的视角

Secure Non-Orthogonal Multiple Access: An Interference Engineering Perspective

论文作者

Lv, Lu, Jiang, Hai, Ding, Zhiguo, Ye, Qiang, Al-Dhahir, Naofal, Chen, Jian

论文摘要

非正交多访问(NOMA)是一种有效的方法,可以改善频谱利用率并支持下一代无线网络的大量连通性。但是,在无线通道上,叠加的Noma信号非常容易窃听,可能导致机密信息严重泄漏。在本文中,我们释放了网络干扰的潜力,并进行了建设性的利用,以增强NOMA网络中的物理层安全性。尤其是,三种不同类型的网络干扰,包括人造噪声,专门设计的干扰信号和用户间干扰,经过精心设计,可以故意减少信息泄漏,同时减轻对合法用户的信号接收质量的影响,从而显着增强NOMA的传输安全性。此外,我们提出了干扰工程策略,以实施更先进的全双工Noma,智能反射表面NOMA,认知无线电Noma和多细胞Noma网络,并讨论了一些开放的研究问题和挑战,这可能会激发创新的干扰性工程工程,以实现安全Noma通信。

Non-orthogonal multiple access (NOMA) is an efficient approach that can improve spectrum utilization and support massive connectivity for next-generation wireless networks. However, over a wireless channel, the superimposed NOMA signals are highly susceptible to eavesdropping, potentially leading to severe leakage of confidential information. In this article, we unleash the potential of network interference and exploit it constructively to enhance physical-layer security in NOMA networks. Particularly, three different types of network interference, including artificial noise, specifically-designed jamming signals, and inter-user interference, are well engineered to intentionally reduce information leakage while mitigating the effect on signal reception quality of legitimate users, thereby significantly enhancing the transmission security of NOMA. Furthermore, we propose interference engineering strategies for more advanced full-duplex NOMA, intelligent reflecting surface NOMA, cognitive radio NOMA, and multi-cell NOMA networks, and discuss several open research problems and challenges, which could inspire innovative interference engineering designs for secure NOMA communications.

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