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Comparison of delay-interferometer and time-lens-based all-optical OFDM demultiplexers

Comparison of delay-interferometer and time-lens-based all-optical OFDM demultiplexers
Comparison of delay-interferometer and time-lens-based all-optical OFDM demultiplexers

In this paper we present the first detailed numerical comparison of two promising all-optical schemes to demultiplex orthogonal frequency-division multiplexing (OFDM) signals. The investigated schemes are the optical discrete Fourier transformation (O-DFT) and the optical spectral magnification (SM) based on time lenses. In the former scheme, cascaded delay-interferometers (DIs) are used to perform the O-DFT, with subsequent active optical gating to remove the intercarrier interference (ICI). Here a reduced-complexity partial O-DFT, realized by replacing a number of DIs with optical bandpass filters, is investigated. In the latter scheme the OFDM spectrum is magnified, allowing for simple optical bandpass filtering of the individual subcarriers with reduced ICI. Ideally only a single unit consisting of two time lenses is needed, reducing the complexity and potentially the energy consumption compared to the type of O-DFT scheme relying on many active gates. The bit-error-rate is estimated down to ∼10-6 by Monte Carlo bit-error counting for a 32-subcarrier OFDM input signal, showing that a performance close to the ideal O-DFT is achievable for both the reduced-complexity O-DFT and the SM scheme.

All-optical OFDM, optical discrete Fourier transformation, optical Fourier transformation, Time lens
299-302
IEEE
Lillieholm, Mads
9604a1b4-d4e2-40c7-afdf-680bab27ec5f
Mulvad, Hans Christian H.
b461b05f-88f2-4f28-b20a-e45cf258f456
Galili, Michael
5628c538-e95f-417f-b008-a4c781fb6c39
Oxenløwe, Leif K.
62e9a2cb-ffbf-4f2e-a52e-8fe321ebb634
Lillieholm, Mads
9604a1b4-d4e2-40c7-afdf-680bab27ec5f
Mulvad, Hans Christian H.
b461b05f-88f2-4f28-b20a-e45cf258f456
Galili, Michael
5628c538-e95f-417f-b008-a4c781fb6c39
Oxenløwe, Leif K.
62e9a2cb-ffbf-4f2e-a52e-8fe321ebb634

Lillieholm, Mads, Mulvad, Hans Christian H., Galili, Michael and Oxenløwe, Leif K. (2015) Comparison of delay-interferometer and time-lens-based all-optical OFDM demultiplexers. In 2015 IEEE Photonics Conference, IPC 2015. IEEE. pp. 299-302 . (doi:10.1109/IPCon.2015.7323694).

Record type: Conference or Workshop Item (Paper)

Abstract

In this paper we present the first detailed numerical comparison of two promising all-optical schemes to demultiplex orthogonal frequency-division multiplexing (OFDM) signals. The investigated schemes are the optical discrete Fourier transformation (O-DFT) and the optical spectral magnification (SM) based on time lenses. In the former scheme, cascaded delay-interferometers (DIs) are used to perform the O-DFT, with subsequent active optical gating to remove the intercarrier interference (ICI). Here a reduced-complexity partial O-DFT, realized by replacing a number of DIs with optical bandpass filters, is investigated. In the latter scheme the OFDM spectrum is magnified, allowing for simple optical bandpass filtering of the individual subcarriers with reduced ICI. Ideally only a single unit consisting of two time lenses is needed, reducing the complexity and potentially the energy consumption compared to the type of O-DFT scheme relying on many active gates. The bit-error-rate is estimated down to ∼10-6 by Monte Carlo bit-error counting for a 32-subcarrier OFDM input signal, showing that a performance close to the ideal O-DFT is achievable for both the reduced-complexity O-DFT and the SM scheme.

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More information

Published date: 9 November 2015
Venue - Dates: IEEE Photonics Conference, IPC 2015, , Reston, United States, 2015-08-30 - 2015-08-31
Keywords: All-optical OFDM, optical discrete Fourier transformation, optical Fourier transformation, Time lens

Identifiers

Local EPrints ID: 457664
URI: http://eprints.soton.ac.uk/id/eprint/457664
PURE UUID: 64841941-f355-4fef-934e-2daf9a601182
ORCID for Hans Christian H. Mulvad: ORCID iD orcid.org/0000-0003-2552-0742

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Date deposited: 14 Jun 2022 16:58
Last modified: 17 Mar 2024 03:38

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Contributors

Author: Mads Lillieholm
Author: Michael Galili
Author: Leif K. Oxenløwe

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