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可切换耦合继电器助力具有发射天线选择和能量收集功能的大规模非正交多址接入网络

Switchable Coupled Relays Aid Massive Non-Orthogonal Multiple Access Networks with Transmit Antenna Selection and Energy Harvesting.

作者信息

Tran Thanh-Nam, Voznak Miroslav

机构信息

Faculty of Electrical Engineering and Computer Science, VSB-Technical University of Ostrava, 17. Listopadu 2172/15, 708 00 Ostrava, Czech Republic.

Faculty of Electronics and Communications, Sai Gon University, 273 An Duong Vuong, Hochiminh 700 00, Vietnam.

出版信息

Sensors (Basel). 2021 Feb 5;21(4):1101. doi: 10.3390/s21041101.

Abstract

The article proposes a new switchable coupled relay model for massive MIMO-NOMA networks. The model equips a much greater number of antennas on the coupled relays to dramatically improve capacity and Energy Efficiency (EE). Each relay in a coupled relay is selected and delivered into a single transmission block to serve multiple devices. This paper also plots a new diagram of two transmission blocks which illustrates energy harvesting and signal processing. To optimize the system performance of a massive MIMO-NOMA network, i.e., Outage Probability (OP) and system throughput, this paper deploys a Transmit Antenna Selection (TAS) protocol to select the best received signals from the pre-coding channel matrices. In addition, to achieve better EE, Simultaneously Wireless Information Power Transmit (SWIPT) is implemented. Specifically, this paper derives the novel theoretical analysis in closed-form expressions, i.e., OP, system throughput and EE from a massive MIMO-NOMA network aided by switchable coupled relays. The theoretical results obtained from the closed-form expressions show that a massive MIMO-NOMA network achieves better OP and greater capacity and expends less energy than the MIMO technique. Finally, independent Monte Carlo simulations verified the theoretical results.

摘要

本文提出了一种适用于大规模MIMO-NOMA网络的新型可切换耦合中继模型。该模型在耦合中继上配备了数量更多的天线,以显著提高容量和能量效率(EE)。耦合中继中的每个中继被选择并放入单个传输块中,为多个设备提供服务。本文还绘制了一个新的双传输块示意图,展示了能量收集和信号处理过程。为了优化大规模MIMO-NOMA网络的系统性能,即中断概率(OP)和系统吞吐量,本文采用了发射天线选择(TAS)协议,从预编码信道矩阵中选择最佳接收信号。此外,为了实现更好的能量效率,还采用了同时无线信息与能量传输(SWIPT)技术。具体而言,本文从理论上推导出了闭式表达式,即由可切换耦合中继辅助的大规模MIMO-NOMA网络的中断概率、系统吞吐量和能量效率。从闭式表达式获得的理论结果表明,大规模MIMO-NOMA网络比MIMO技术具有更好的中断概率、更大的容量且能耗更低。最后,独立的蒙特卡罗仿真验证了理论结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff39/7916044/c8e13d330f73/sensors-21-01101-g001.jpg

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