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首页> 外文期刊>Optical Communications and Networking, IEEE/OSA Journal of >Analog fiber-wireless downlink transmission of IFoF/mmWave over in-field deployed legacy PON infrastructure for 5G fronthauling
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Analog fiber-wireless downlink transmission of IFoF/mmWave over in-field deployed legacy PON infrastructure for 5G fronthauling

机译:IFOF / MMWAVE的模拟光纤无线下行链路传输用于5G Frontoning的现场内部部署的遗留PON基础架构

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摘要

We present a fixed mobile convergence topology for analog intermediate frequency over fiber (A-IFoF)/millimeter-wave (mmWave) transmission, benefiting from the reuse of the deployed passive optical network (PON) infrastructure, towards future mobile fronthaul architectures. Powerful fully programmable gate array boards located inside the access nodes convert the Ethernet-based traffic to orthogonal frequency-division multiplexing (OFDM)-modulated intermediate frequency (IF) waveforms, supporting the A-IFoF propagation through the optical legacy infrastructure. Coexistence of the 5G traffic with the residential legacy traffic for the field propagation is achieved through utilization of unused C-band channels and wavelength-division multiplexing. To this extent, we experimentally demonstrate the downlink operation of a converged A-IFoF/mmWave link, over Telecom Italia’s legacy infrastructure located at Turin. Four-quadrature amplitude modulation (QAM)-OFDM and 16QAM-OFDM IF signals with ${sim}{200};{m MHz}$∼200MHz and 400 MHz bandwidth [considered within the 3rd Generation Partnership Project (3GPP) New Radio specifications] were generated through a radio frequency system-on-chip platform and optically multiplexed with the legacy fiber-to-the-home services. After propagation to the field, the A-IFoF stream was directly fed to a directional wireless link operating at 60 GHz. Successful PON/over-the-air transmission with error vector magnitude (EVM) values well below the 3GPP (${lt} 12.5 %$<12.5%) requirements for 5G New Radio was demonstrated, with a 10.5% EVM for 16QAM-OFDM modulated with 400 MHz bandwidth.
机译:我们在光纤(A-IFOF)/毫米波(MMWAVE)传输中呈现了一种用于模拟中频的固定移动融合拓扑,从而受益于将部署的被动光网络(PON)基础设施的重用,朝向未来的移动Fronthaulture架构。位于接入节点内的强大的完全可编程门阵列板将基于以太网的流量转换为正交频分复用(OFDM) - 剪发的中频(IF)波形,支持通过光学传统基础架构的A-IFOF传播。通过利用未使用的C波段通道和波分复用的利用,实现了5G流量的5G流量的共存。在这种程度上,我们通过实验展示融合A-Ifof / MMWAVE链接的下行链路运行,在Telecom Italia的遗留基础设施上位于都灵。四正交幅度调制(QAM)-ofdm和16qam-ofdm如果用$ { sim} {200} ; { rm mhz} $ ~200mhz和400 MHz带宽[3次第3代合作伙伴项目(3GPP)通过射频系统的片上平台生成新的无线电规范,并用旧光纤到家庭服务光学多路复用。在传播到字段之后,A-IFOF流直接馈送到在60GHz的定向无线链路上。误报了误差矢量幅度(EVM)值的成功PON /超空气传输,低于3GPP($ { LT} 12.5 %$ <12.5%)5G新无线电的要求,16 QAM为10.5%EVM -ofdm用400 MHz带宽调制。

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  • 作者单位

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

    TIM Technology Innovation—Cloud Access Solutions Via Olivetti 6 10148 Torino Italy;

    Department of Informatics Center for Interdisciplinary Research and Innovation Aristotle University of Thessaloniki Thessaloniki 54636 Greece;

    TIM Technology Innovation—Cloud Access Solutions Via Olivetti 6 10148 Torino Italy;

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

    TIM Technology Innovation—Cloud Access Solutions Via Olivetti 6 10148 Torino Italy;

    Department of Informatics Center for Interdisciplinary Research and Innovation Aristotle University of Thessaloniki Thessaloniki 54636 Greece;

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

    Department of Informatics Center for Interdisciplinary Research and Innovation Aristotle University of Thessaloniki Thessaloniki 54636 Greece;

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

    Department of Informatics Center for Interdisciplinary Research and Innovation Aristotle University of Thessaloniki Thessaloniki 54636 Greece;

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

    Department of Informatics Center for Interdisciplinary Research and Innovation Aristotle University of Thessaloniki Thessaloniki 54636 Greece;

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

    School of Electrical and Computer Engineering National Technical University of Athens Irron Polytexnioy 9 15773 Athens Greece;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Passive optical networks; Computer architecture; OFDM; 5G mobile communication; Optical network units;

    机译:被动光网络;计算机架构;OFDM;5G移动通信;光网络单元;

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