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A Survey of Resource Management Toward 5G Radio Access Networks

机译:面向5G无线电接入网络的资源管理概述

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The next generation 5G radio access network (RAN) system is believed to be a true world wide wireless web (WWWW). This is because such system will seamlessly and ubiquitously connect everything, and support at least 1000-fold traffic volumes, 100 billion connected wireless devices, and diversified use cases as well as quality of service (QoS) requirements (e.g., reliability, latency, data rates, coverage, security, and privacy) of multimedia applications by 2020. Recently, a number of research challenges including the explosive growth in mobile traffic volumes, unprecedented connected devices, and diversified use cases have been identified for the 5G RAN systems. In addition, specific technologies such as multitier communication, massive MIMOs, mmWave backhauling, extreme densifications of nodes (UDNs), full-duplex communications (FDCs), and energy harvesting techniques have emerged in the literature to resolve some of these challenges of the 5G RAN systems. However, the research activities defining specific technical advancements for 5G RAN systems are yet to continue in the next half decade before specifications for standardization and commercialization are concluded. Motivated by the limited number of existing surveys of such technical advancements in a broader perspective (i.e., interference, spectrum-efficient, and energy-efficient management schemes), this paper seeks to take stock of state-of-the-art (SOTA) on such technical developments. Our attention focuses on relevant radio interference and resource management (RIRM) schemes that have been proposed in the last five years. Our contribution lies in the analysis, synthesis, and summarized alignments of the conventional RIRM schemes toward overcoming the identified challenges for the 5G RAN systems. Finally, the review highlights a number of open research issues deduced from recently proposed RIRM schemes.
机译:下一代5G无线电接入网络(RAN)系统被认为是真正的万维网(WWWW)。这是因为这样的系统将无缝且无所不在地连接所有内容,并支持至少1000倍的流量,1000亿个已连接的无线设备以及多样化的用例以及服务质量(QoS)要求(例如,可靠性,延迟,数据)到2020年,多媒体应用的速率,覆盖范围,安全性和隐私性)。最近,已经为5G RAN系统确定了许多研究挑战,包括移动流量的爆炸性增长,前所未有的连接设备以及多样化的用例。此外,文献中还出现了诸如多层通信,大规模MIMO,mmWave回传,极端密度节点(UDN),全双工通信(FDC)和能量收集技术之类的特定技术,以解决5G的一些挑战。 RAN系统。但是,在确定标准化和商业化规范之前的下一个五年中,定义5G RAN系统特定技术进步的研究活动仍将继续。由于从更广阔的角度(即干扰,频谱高效和能效管理方案)进行的有关此类技术进步的现有调查数量有限,因此,本文试图总结一下最新技术(SOTA)在这样的技术发展上。我们的注意力集中在最近五年中提出的相关无线电干扰和资源管理(RIRM)方案上。我们的贡献在于对常规RIRM方案的分析,综合和总结,以克服5G RAN系统所面临的挑战。最后,该评论重点介绍了从最近提出的RIRM计划推论出的许多开放研究问题。

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