Terahertz (THz) communication is gaining more interest as one of the envisioned enablers of high-data-rate short-distance indoor applications in beyond 5G networks. Moreover, non-orthogonal multiple-access (NOMA)-enabled schemes are promising schemes to realize the target spectral efficiency, low latency, and user fairness requirements in future networks. In this paper, an energy-efficient cooperative NOMA (CNOMA) scheme that guarantees the minimum required rate for the cell-edge users in an indoor THz-MISO communications network is proposed. The proposed cooperative scheme consists of three stages: (i) beamforming stage that allocates base-station (BS) beams to THz cooperating cell-center users using analog beamforming with the aid of the cosine similarity metric, (ii) user pairing stage that is tackled using the Hungarian algorithm, and (iii) power allocation stage for both the BS THz-NOMA transmit power and the cooperation power of the cooperating cell-center users, which are optimized sequentially. The obtained results quantify the energy efficiency (EE) of the proposed scheme and shed new light on the performance of multi-user THz-NOMA-enabled networks.
翻译:作为5G网络之外高数据速短距离室内应用的预期推动者之一,Therahertz(Thz)通信越来越受到更多关注,因为5G网络之外有高数据速近距离室内应用的预期推动者之一;此外,非横向多接入(NOMA)支持的计划是未来网络中实现目标光谱效率、低悬浮度和用户公平性要求的有希望的计划;在本文件中,一个节能的NOMA(CNOMA)合作计划(CNOMA)计划,保障室内THz-MISO通信网络中细胞尖端用户的最低所需比率;拟议合作计划分为三个阶段:(一) 将基站(BS) 信号分配给THZ合作的细胞中心用户,使用类似光度指标的模拟组合;(二) 使用匈牙利算法解决的用户配对阶段;(三) BS THz-NOMA传输能力与合作细胞中心用户的合作能力分配阶段,按顺序优化。