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Design considerations for software-defined wireless networking in heterogeneous cloud radio access networks

机译:异构云无线电接入网络中软件定义的无线网络的设计注意事项

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The fifth generation (5G) cellular infrastructure is envisaged as a dense and heterogeneous deployment of small cells overlapping with existing macrocells in the Radio Access Network (RAN). Densification and heterogeneity, however, pose new challenges such as dealing with interference, accommodating massive signaling traffic, and managing increased energy consumption. Heterogeneous Cloud Radio Access Networks (H-CRAN) emerges as a candidate architecture for a sustainable deployment of 5G. In addition, the application of SDN concepts to wireless environments motivated recent research in the so-called Software-Defined Wireless Networking (SDWN). In this article, we discuss how SDWN can support the development of a flexible, programmable, and sustainable infrastructure for 5G. We also present a case study based on SDWN to perform frequency assignment, interference, and handover control in an H-CRAN environment. Results allow the establishment of a tradeoff between wireless communication capacity gains and signaling overhead added by the employment of SDWN concepts to H-CRAN.
机译:第五代(5G)蜂窝基础设施被设想为与无线接入网(RAN)中的现有宏蜂窝重叠的小型蜂窝的密集异构部署。然而,致密化和异质性带来了新的挑战,例如处理干扰,容纳大量信令流量以及管理增加的能耗。异构云无线电接入网络(H-CRAN)成为5G可持续部署的候选架构。此外,SDN概念在无线环境中的应用激发了所谓软件定义无线网络(SDWN)的最新研究。在本文中,我们讨论了SDWN如何支持5G的灵活,可编程和可持续基础架构的发展。我们还提出了一个基于SDWN的案例研究,以在H-CRAN环境中执行频率分配,干扰和切换控制。结果允许在无线通信容量增益与通过将SDWN概念应用于H-CRAN而增加的信令开销之间进行权衡。

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