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Radio over Fiber Based Fronthaul for Next-Generation 5G Networks

机译:下一代5G网络基于光纤的无线前传

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In this paper, we present the benefits, limitations, architectures, and milestones of the radio-over-fiber (RoF) network for application in the fronthaul of next-generation 5G mobile networks. RoF is conceived as the fronthaul of the fiber-wireless system based on a centralized radio access network (CRAN), where a fully centralized approach shifts the signal processing from the remote radio heads (RRHs) to a baseband unit (BBU) in a central office. We present our recent advances in RoF-based fronthaul for next-generation 5G mobile networks. Furthermore, we experimentally demonstrate the spectral efficient $M$-ary quadrature-amplitude modulation ($M$-QAM) technique in the wavelength division multiplexed (WDM) hybrid fiber-wireless RoF network using a directly modulated laser (DML) with a symbol rate of 250 MBd (megabaud) on two optical wavelengths. The error vector magnitudes of the overall link for 4/16/64-QAM are below the 3GPP standard for 5G.
机译:在本文中,我们介绍了用于下一代5G移动网络前传的光纤无线电(RoF)网络的优势,局限性,架构和里程碑。 RoF被认为是基于集中式无线访问网络(CRAN)的光纤无线系统的前传,其中完全集中化的方法将信号处理从远程无线电头(RRH)转移到中央的基带单元(BBU)办公室。我们介绍了下一代5G移动网络在基于RoF的前传方面的最新进展。此外,我们通过实验证明了光谱效率 $ M $ 四进制正交幅度调制( $ M $ -QAM)技术在波分复用(WDM)混合光纤-无线RoF网络中使用了直接调制的激光(DML),在两个光学波长上的符号率均为250 MBd(兆波特)。 4/16 / 64-QAM的整个链路的误差矢量幅度低于5G的3GPP标准。

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