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Experimental Demonstration of Soft-ROADMs with Drop Signal Phase Independent Performance for PTMP 5G Fronthauls. / Gonem, Omaro; Giddings, Roger; Tang, Jianming.
2023. Paper presented at 2023 International Conference on Photonics in Switching and Computing (PSC), Mantova, Italy.

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Gonem, O, Giddings, R & Tang, J 2023, 'Experimental Demonstration of Soft-ROADMs with Drop Signal Phase Independent Performance for PTMP 5G Fronthauls', Paper presented at 2023 International Conference on Photonics in Switching and Computing (PSC), Mantova, Italy, 26/09/23 - 26/09/23. https://doi.org/10.1109/PSC57974.2023.10297126

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Gonem O, Giddings R, Tang J. Experimental Demonstration of Soft-ROADMs with Drop Signal Phase Independent Performance for PTMP 5G Fronthauls. 2023. Paper presented at 2023 International Conference on Photonics in Switching and Computing (PSC), Mantova, Italy. doi: 10.1109/PSC57974.2023.10297126

Author

Gonem, Omaro ; Giddings, Roger ; Tang, Jianming. / Experimental Demonstration of Soft-ROADMs with Drop Signal Phase Independent Performance for PTMP 5G Fronthauls. Paper presented at 2023 International Conference on Photonics in Switching and Computing (PSC), Mantova, Italy.

RIS

TY - CONF

T1 - Experimental Demonstration of Soft-ROADMs with Drop Signal Phase Independent Performance for PTMP 5G Fronthauls

AU - Gonem, Omaro

AU - Giddings, Roger

AU - Tang, Jianming

PY - 2023/11/2

Y1 - 2023/11/2

N2 - A dual-arm IQ soft-ROADM drop element is demonstrated to dynamically and adaptively drop any IQ channel pair, from a single optical wavelength containing multiple sub-wavelengths, whilst maintaining an acceptable BER independent of drop RF signal phase offset. Such soft-ROADMs simplify the practical implementation of Point-to-Multipoint 5G fronthauls.

AB - A dual-arm IQ soft-ROADM drop element is demonstrated to dynamically and adaptively drop any IQ channel pair, from a single optical wavelength containing multiple sub-wavelengths, whilst maintaining an acceptable BER independent of drop RF signal phase offset. Such soft-ROADMs simplify the practical implementation of Point-to-Multipoint 5G fronthauls.

U2 - 10.1109/PSC57974.2023.10297126

DO - 10.1109/PSC57974.2023.10297126

M3 - Paper

T2 - 2023 International Conference on Photonics in Switching and Computing (PSC)

Y2 - 26 September 2023 through 26 September 2023

ER -