5G技术的NOMA和SCMA方案的最新进展综述

Miznah Alshammary, F. Alanezi
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引用次数: 4

摘要

最近,开发5G技术的竞赛采取了多组织竞争的方式,专业机构、民间组织和研究单位正在开展与5G相关的各种技术开发研究。多址方案是大多数人感兴趣的领域中最重要的方面之一,因为5G预计将以高速数据传输容纳大量用户。本文综述了稀疏码多址(SCMA)和非正交多址(NOMA)的最新研究进展。广泛的研究已经进行,以确定最近的发展和他们的结果在本文中提出。本研究发现,SCMA的最新发展主要集中在实现更低的复杂性水平、低误码率和有效高效的能源利用上,而NOMA的最新发展主要集中在频谱效率、空间效率、低误码率和延迟、资源分配和多址接入等性能属性上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Recent Developments in NOMA & SCMA Schemes for 5G Technology
The race for developing 5G technology has taken a multiorganizational competition in the recent past, where the professional bodies, private organizations, and research units are carrying out research in developing various technologies relating to 5G. Multiple Access Scheme is one of the most important aspects that have been an area of interest for the majority as 5G is expected to accommodate large number of users with high speed of data transmission. This paper review the latest developments in the field of research concerning Sparse code multiple access (SCMA) and Non-orthogonal multiple access (NOMA). Ann extensive research has been carried out to identify the recent developments and their results are presented in this paper. This study has found that most of the recent developments in SCMA were focusing on achieving lower complexity levels, low BER, and effective and efficient energy utilization, and the recent developments identified regarding NOMA focused especially on the performance attributes like spectral efficiency, spatial efficiency, low BER and latency, and resource allocation and multiple access.
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