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Real-time high-bandwidth mm-wave 5G NR signal transmission with analog radio-over-fiber fronthaul over multi-core fiber

  • Simon Rommel (Corresponding author)
  • , Evangelos Grivas
  • , Bruno Cimoli
  • , Delphin Dodane
  • , Alvaro Morales
  • , Evangelos Pikasis
  • , Jerome Bourderionnet
  • , Gilles Feugnet
  • , Juliana Barros Carvalho
  • , Michail Katsikis
  • , Konstantinos Ntontin
  • , Dimitrios Kritharidis
  • , Izabela Spaleniak
  • , Paul Mitchell
  • , Mykhaylo Dubov
  • , Idelfonso Tafur Monroy

Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

Samenvatting

This article presents an experimental demonstration of a high-capacity millimeter-wave 5G NR signal transmission with analog radio-over-fiber (ARoF) fronthaul over multi-core fiber and full real-time processing. The demonstration validates the core of the blueSPACE fronthaul architecture which combines ARoF fronthaul with space division multiplexing in the optical distribution network to alleviate the fronthaul capacity bottleneck and maintain a centralized radio access network with fully centralized signal processing. The introduction of optical beamforming in the blueSPACE architecture brings true multi-beam transmission and enables full spatial control over the RF signal. The proposed ARoF architecture features a transmitter that generates the ARoF signal and an optical signal carrying a reference local oscillator employed for downconversion at the remote unit from a single RF reference at the central office. A space division multiplexing based radio access network with multi-core fibre allows parallel transport of the uplink ARoF signal and reference local oscillator at the same wavelength over separate cores. A complete description of the real-time signal processing and experimental setup is provided and system performance is evaluated. Transmission of an 800 MHz wide extended 5G NR fronthaul signal over a 7-core fibre is shown with full real-time signal processing, achieving 1.4 Gbit/s with a bit error rate < 3.8 × 10 - 3 and thus below the limit for hard-decision forward error correction with 7% overhead.

Originele taal-2Engels
Artikelnummer43
Aantal pagina's20
TijdschriftEURASIP Journal on Wireless Communications and Networking
Volume2021
DOI's
StatusGepubliceerd - 26 feb 2021

Financiering

This work was supported by the blueSPACE project which has received funding from the European Union’s Horizon 2020 research and innovation programme under Grant agreement No. 762055.

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  • BlueSpace

    Tafur Monroy, I. (Project Manager), Rommel, S. (Projectmedewerker), Patterson, D. (Projectmedewerker), Cimoli, B. (Projectmedewerker), Witteveen, F. (Projectmedewerker), Sanders, R. (Project communicatie medewerker) & Barros Carvalho, J. (Projectmedewerker)

    1/06/1731/05/20

    Project: Onderzoek direct

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