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Experimental Investigation of New Fronthaul Concepts for 5G

机译:新FRONTHAUL概念的试验调查5G

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The evolution to a centralized radio access network (C-RAN), where multiple base band units (BBU) are co-located to jointly serve multiple remote radio heads (RRH), results in a more efficient use of radio resources [1]. Nevertheless, it also imposes more stringent requirements on the transport network connecting the BBU pool to the RRHs, also known as fronthaul. Especially the increasing demand for higher data rates in the fronthaul challenges current solutions based on protocols like the widespread common public radio interface (CPRI). In this paper, we investigate two promising approaches to reduce the optical bandwidth utilization in the mobile fronthaul of next-generation cloud radio access networks. We experimentally analyze and compare the performance of an analog radio-over-fiber fronthaul and a new digital fronthaul. The analog system consists of four pi/4-shift DQPSK modulated sub-channels with a data rate of 2.5 Gbit/s each and originates from a custom millimeter-wave system. The digital fronthaul approach utilizes On-Off-Keying (OOK) and is based on 10 Gigabit Ethernet.
机译:到集中式无线电接入网络(C-RAN)的演变,其中多个基带单元(BBU)共同定位以共同定位多个远程无线电头(RRH),导致更有效地使用无线电资源[1]。然而,它对将BBU池连接到RRH的传输网络也强烈提出了更严格的要求,也称为Fronthaul。特别是在Fronthaul挑战FRONTHAUL的更高数据速率的情况下,基于广泛公共公共无线电接口(CPRI)的协议越来越多的数据率。在本文中,我们调查了两个有希望的方法,以减少下一代云无线电接入网络的移动Frontonul中的光学带宽利用。我们通过实验分析和比较模拟式无线电过纤维Fronthaul和新型数字Fronthaul的性能。模拟系统由四个PI / 4移位DQPSK调制的子通道组成,数据速率为2.5 Gbit / s,源自自定义毫米波系统。数字Fronthaul方法利用开关键控(OOK),基于10千兆以太网。

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