论文标题

依赖可重构智能表面的MIMO-NOMA网络:基于信号的设计

MIMO-NOMA Networks Relying on Reconfigurable Intelligent Surface: A Signal Cancellation Based Design

论文作者

Hou, Tianwei, Liu, Yuanwei, Song, Zhengyu, Sun, Xin, Chen, Yue

论文摘要

可重新配置的智能表面(RIS)技术是下一代网络的有希望的信号增强或信号取消技术。我们在RISS上设计了一种新型的无源波束形成重量,以同时服务于配对用户的多输入多输出(MIMO)非正交多访问(NOMA)网络,其中采用了基于信号取消(SCB)设计。为了实施拟议的SCB设计,我们首先评估了弥漫性散射和异常反射器方案中所需的最小RISS数量。然后,得出新的通道统计信息,以表征有效的通道增益。为了评估网络的性能,我们得出了停电概率(OP)和Ergodic速率(ER)的封闭形式表达式。多样性订单以及高信号到噪声(SNR)的斜率是用于工程见解的。已经评估了网络的有限分辨率设计的性能。我们的分析结果表明:i)借助大量RIS元素可以消除簇间干扰; ii)BS-RIS和RIS-USER链路的视线是分散散射场景所需的,而对于异常反射器方案,LOS链接并不是强制性的。

Reconfigurable intelligent surface (RIS) technique stands as a promising signal enhancement or signal cancellation technique for next generation networks. We design a novel passive beamforming weight at RISs in a multiple-input multiple-output (MIMO) non-orthogonal multiple access (NOMA) network for simultaneously serving paired users, where a signal cancellation based (SCB) design is employed. In order to implement the proposed SCB design, we first evaluate the minimal required number of RISs in both the diffuse scattering and anomalous reflector scenarios. Then, new channel statistics are derived for characterizing the effective channel gains. In order to evaluate the network's performance, we derive the closed-form expressions both for the outage probability (OP) and for the ergodic rate (ER). The diversity orders as well as the high-signal-to-noise (SNR) slopes are derived for engineering insights. The network's performance of a finite resolution design has been evaluated. Our analytical results demonstrate that: i) the inter-cluster interference can be eliminated with the aid of large number of RIS elements; ii) the line-of-sight of the BS-RIS and RIS-user links are required for the diffuse scattering scenario, whereas the LoS links are not compulsory for the anomalous reflector scenario.

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