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A detailed review on non-orthogonal multiple accessbased spatial modulation systems

机译:关于非正交多址空间调制系统的详细综述

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Purpose - Non-orthogonal multiple access (NOMA) is a much hopeful scheme, which is deployed to enhance the spectral efficiency (SE) significantly, and it also enhances the massive access that has attained substantial concern from industrial and academic domains. However, the deployment of superposition coding (SC) at the receiver side resulted in interference. For reducing this interference, "multi-antenna NOMA" seems to be an emerging solution. Particularly, by using the channel state information at the transmitter, spatial beam forming could be deployed that eliminates the interference in an effective manner. Design/methodology/approach - This survey analyzes the literature review and diverse techniques regarding the NOMA-based spatial modulation (SM) environment. It reviews a bunch of research papers and states a significant analysis. Initially, the analysis depicts various transmit antenna selection techniques that are contributed in different papers. This survey offers a comprehensive study regarding the chronological review and performance achievements in each contribution. The analytical review also concerns on the amplitude phase modulation (APM) selection schemes adopted in several contributions. Moreover, the objective functions adopted in the reviewed works are also analyzed. Finally, the survey extends with various research issues and its gaps that can be useful for the researchers to promote improved future works on NOMA-based SM. Findings - This paper contributes to a review related to NOMA-based SM systems. Various techniques and performance measures adopted in each paper are analyzed and described in this survey. More particularly, the selection of transmission antenna and APM are also examined in this review work. Moreover, the defined objective function of each paper is also observed and made a chronological review as well. Finally, the research challenges along with the gaps on NOMA-based SM systems are also elaborated. Originality/value - This paper presents a brief analysis of NOMA-based SM systems. To the best of the authors' knowledge, this is the first work that uses NOMA-based SM systems to enhance SE.
机译:目的 - 非正交多次访问(NOMA)是一种非常有希望的方案,其部署以提高光谱效率(SE)显着增强,而且还提高了达到了工业和学术域的大量关注的大规模访问。然而,在接收器侧的叠加编码(SC)的部署导致干扰。为了减少这种干扰,“多天线NOMA”似乎是一种新兴的解决方案。特别地,通过在发射器处使用信道状态信息,可以部署空间波束形成,其以有效的方式消除干扰。设计/方法/方法 - 本调查分析了关于基于NOMA的空间调制(SM)环境的文献综述和多样化技术。它评论了一群研究论文,并说明了一个重要的分析。最初,分析描述了在不同纸张中贡献的各种发射天线选择技术。该调查提供了对每项贡献的按时间顺序审查和绩效成就的全面研究。分析审查还涉及在若干贡献中采用的幅度相位调制(APM)选择方案。此外,还分析了在审查的作品中采用的目标职能。最后,该调查与各种研究问题及其差距延伸,这对研究人员来说可以有用,以促进基于NOMA的SM的改善的未来作品。调查结果 - 本文有助于审查与基于NOMA的SM系统相关。在本调查中分析和描述了每份纸中采用的各种技术和性能措施。更具体地,在该综述工作中还检查了发送天线和APM的选择。此外,还观察到每份纸张的定义目标函数并进行了按时间顺序审查。最后,还阐述了基于NOMA的SM系统的差距以及基于NOMA的SM系统的障碍。原创性/值 - 本文介绍了基于NOMA的SM系统。据作者所知,这是第一个使用基于NOMO的SM系统来增强SE的工作。

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