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Non-orthogonal multiple access for 5G and beyond

机译:5G及以上的非正交多路访问

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摘要

Driven by the rapid escalation of the wireless capacity requirements imposed by advanced multimedia applications (e.g., ultrahigh-definition video, virtual reality, etc.), as well as the dramatically increasing demand for user access required for the Internet of Things (IoT), the fifth-generation (5G) networks face challenges in terms of supporting large-scale heterogeneous data traffic. Nonorthogonal multiple access (NOMA), which has been recently proposed for the third-generation partnership projects long-term evolution advanced (3GPP-LTE-A), constitutes a promising technology of addressing the aforementioned challenges in 5G networks by accommodating several users within the same orthogonal resource block. By doing so, significant bandwidth efficiency enhancement can be attained over conventional orthogonal multiple-access (OMA) techniques. This motivated numerous researchers to dedicate substantial research contributions to this field. In this context, we provide a comprehensive overview of the state of the art in power-domain multiplexing-aided NOMA, with a focus on the theoretical NOMA principles, multiple-antenna-aided NOMA design, on the interplay between NOMA and cooperative transmission, on the resource control of NOMA, on the coexistence of NOMA with other emerging potential 5G techniques and on the comparison with other NOMA variants. We highlight the main advantages of power-domain multiplexing NOMA compared to other existing NOMA techniques. We summarize the challenges of existing research contributions of NOMA and provide potential solutions. Finally, we offer some design guidelines for NOMA systems and identify promising research opportunities for the future.
机译:受到高级多媒体应用(例如,超高清视频,虚拟现实等)强加的无线容量要求的迅速提升以及物联网(IoT)所要求的用户访问需求的急剧增长的驱动,第五代(5G)网络在支持大规模异构数据流量方面面临挑战。非正交多址(NOMA)是最近为第三代长期演进高级项目(3GPP-LTE-A)提出的,它构成了一种有前途的技术,可以通过在5G网络中容纳多个用户来解决上述挑战。相同的正交资源块。通过这样做,与常规的正交多路访问(OMA)技术相比,可以获得显着的带宽效率增强。这激励了许多研究人员致力于该领域的大量研究。在此背景下,我们全面介绍了功率域复用辅助NOMA的最新技术,重点是理论NOMA原理,多天线辅助NOMA设计,NOMA与协作传输之间的相互作用,关于NOMA的资源控制,关于NOMA与其他新兴的5G技术的共存以及与其他NOMA变体的比较。与其他现有的NOMA技术相比,我们强调了功率域复用NOMA的主要优势。我们总结了NOMA现有研究贡献所面临的挑战,并提供了潜在的解决方案。最后,我们为NOMA系统提供了一些设计准则,并确定了未来的有希望的研究机会。

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