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Non-orthogonal multiple access for 5G: solutions, challenges, opportunities, and future research trends

机译:5G的非正交多路访问:解决方案,挑战,机遇和未来研究趋势

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摘要

The increasing demand of mobile Internet and the Internet of Things poses challenging requirements for 5G wireless communications, such as high spectral efficiency and massive connectivity. In this article, a promising technology, non-orthogonal multiple access (NOMA), is discussed, which can address some of these challenges for 5G. Different from conventional orthogonal multiple access technologies, NOMA can accommodate much more users via nonorthogonal resource allocation. We divide existing dominant NOMA schemes into two categories: power-domain multiplexing and code-domain multiplexing, and the corresponding schemes include power-domain NOMA, multiple access with low-density spreading, sparse code multiple access, multi-user shared access, pattern division multiple access, and so on. We discuss their principles, key features, and pros/cons, and then provide a comprehensive comparison of these solutions from the perspective of spectral efficiency, system performance, receiver complexity, and so on. In addition, challenges, opportunities, and future research trends for NOMA design are highlighted to provide some insight on the potential future work for researchers in this field. Finally, to leverage different multiple access schemes including both conventional OMA and new NOMA, we propose the concept of software defined multiple access (SoDeMA), which enables adaptive configuration of available multiple access schemes to support diverse services and applications in future 5G networks.
机译:移动互联网和物联网的不断增长的需求对5G无线通信提出了挑战性要求,例如高频谱效率和大规模连接。在本文中,我们讨论了一种有前途的技术-非正交多址(NOMA),它可以解决5G的一些挑战。与传统的正交多址技术不同,NOMA可以通过非正交资源分配来容纳更多用户。我们将现有的主要NOMA方案分为两类:功率域多路复用和码域多路复用,相应的方案包括功率域NOMA,具有低密度扩展的多路访问,稀疏代码多路访问,多用户共享访问,模式除法多重存取,依此类推。我们讨论了它们的原理,主要功能和优点/缺点,然后从频谱效率,系统性能,接收器复杂性等角度对这些解决方案进行了全面比较。此外,还着重介绍了NOMA设计的挑战,机遇和未来的研究趋势,从而为该领域的研究人员提供了有关潜在的未来工作的见识。最后,为了利用包括传统OMA和新NOMA在内的不同多址方案,我们提出了软件定义多址(SoDeMA)的概念,该概念允许对可用的多址方案进行自适应配置,以支持未来5G网络中的各种服务和应用。

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