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首页> 外文期刊>IEEE Transactions on Sustainable Computing >Inter-Beam Interference Cancellation and Physical Layer Security Constraints by 3D Polarized Beamforming in Power Domain NOMA Systems
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Inter-Beam Interference Cancellation and Physical Layer Security Constraints by 3D Polarized Beamforming in Power Domain NOMA Systems

机译:电源域NOMA系统中的3D偏振波束形成束间干扰消除和物理层安全约束

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摘要

The application of BF techniques in power domain non-orthogonal multiple access (NOMA) schemes allows users to share the same single BF vector for operational reliability. The occurrence of inter-beam interference (IBI) is highly probable in a congested cell (i.e., a cell with high user density and active users). IBI cancellation by using 3D polarized BF in order to enhance the practicability of NOMA systems is the focus of this paper. An IBI cancellation scheme is proposed and evaluations of the spectrum efficiency according to the scenario congestion, as well as of the interference reduction by narrowing the generated beam to a desired beam-width, are presented. The security in the physical (PHY) layer in order to achieve confidential and authentic communication is also an important consideration. The proposed scheme checks the PHY layer security constraints on the number of users served per beam. In simulations, the robustness of the proposed scheme allows the average half power beam-width (HPBW) to be brought to about 20° for different steps in HPBW and for different user densities. Furthermore, depending on the user density, spectrum efficiency gains of approximately 4 bits/s/Hz and 9 bits/s/Hz are achieved by the described IBI cancellation scheme.
机译:BF技术在功率域非正交多址(NOMA)方案中的应用允许用户共享相同的单个BF向量以进行操作可靠性。在拥挤的电池(即具有高用户密度和有源用户的单元)中,可能在束间干扰(IBI)的发生。使用3D偏振BF的IBI取消以提高NOMA系统的实用性是本文的重点。提出了IBI取消方案,并提出了根据场景拥塞的频谱效率的评估,以及通过将产生的光束缩小到所需的光束宽度来进行干扰减少。物理(PHY)层中的安全性以实现机密和真实的通信也是一个重要的考虑因素。所提出的方案检查每波束服务的用户数量的PHY层安全约束。在仿真中,所提出的方案的稳健性允许在HPBW中的不同步骤和不同的用户密度来将平均半功率光束宽度(HPBW)达到约20°。此外,根据用户密度,通过所述IBI取消方案实现大约4位/ S / Hz和9位/ S / Hz的频谱效率。

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