电信线路
诺玛
基站
计算机科学
灵活性(工程)
发射机功率输出
无线
路径损耗
衰退
频道(广播)
功率控制
功率(物理)
电子工程
计算机网络
电信
工程类
发射机
统计
物理
量子力学
数学
作者
Emre Arslan,Fatih Kilinc,Sultangali Arzykulov,Ali Tugberk Dogukan,Abdulkadir Çelik,Ertuğrul Başar,Ahmed M. Eltawil
标识
DOI:10.1109/tgcn.2022.3227870
摘要
Innovative reconfigurable intelligent surface (RIS) technologies are rising and recognized as promising candidates to enhance 6G and beyond wireless communication systems. RISs acquire the ability to manipulate electromagnetic signals, thus, offering a degree of control over the wireless channel and the potential for many more benefits. Furthermore, active RIS designs have recently been introduced to combat the critical double fading problem and other impairments passive RIS designs may possess. In this paper, the potential and flexibility of active RIS technology are exploited for uplink systems to achieve virtual non-orthogonal multiple access (NOMA) through power disparity over-the-air rather than controlling transmit powers at the user side. Specifically, users with identical transmit power, path loss, and distance can communicate with a base station sharing time and frequency resources in a NOMA fashion with the aid of the proposed hybrid RIS system. Here, the RIS is partitioned into active and passive parts and the distinctive partitions serve different users aligning their phases accordingly while introducing a power difference to the users’ signals to enable NOMA. First, the end-to-end system model is presented considering two users. Furthermore, outage probability calculations and theoretical error probability analysis are discussed and reinforced with computer simulation results.
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