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Coupled Transceivers-Fiber Nonlinearity Compensation Based on Machine Learning for Probabilistic Shaping System
Thanh Tu Nguyen
(Creator)
Aston Institute of Photonic Technologies (AiPT)
College of Engineering and Physical Sciences
Dataset
Overview
Research Outputs
(1)
Description
Funders: UK EPSRC
Projects: PHOS, EEMC, TRANSNET
Grant number: EP/S003436/1, EP/S016171/1, EP/R035342/1
Date made available
17 Feb 2020
Publisher
Aston Data Explorer
Date of data production
18 Aug 2019
-
17 Jan 2020
DOI
https://doi.org/10.17036/researchdata.aston.ac.uk.00000460
Research output
Research output per year
2021
2021
2021
1
Article
Research output per year
Research output per year
Coupled Transceiver-Fiber Nonlinearity Compensation Based on Machine Learning for Probabilistic Shaping System
Nguyen, T. T.
,
Zhang, T.
,
Giacoumidis, E.
,
Ali, A.
,
Tan, M.
,
Harper, P.
,
Barry, L. P.
&
Ellis, A. D.
,
15 Jan 2021
,
In:
Journal of Lightwave Technology.
39
,
2
,
p. 388-399
12 p.
, 9216471.
Research output
:
Contribution to journal
›
Article
›
peer-review
Open Access
File
machine learning
100%
transmitter receivers
90%
nonlinearity
59%
constellations
50%
quadrature amplitude modulation
47%
Cite this
DataSetCite
Nguyen, T. T. (Creator) (
17 Feb 2020
). Coupled Transceivers-Fiber Nonlinearity Compensation Based on Machine Learning for Probabilistic Shaping System. Aston Data Explorer.
https://doi.org/10.17036/researchdata.aston.ac.uk.00000460