Iterative Detection and Phase-Noise Compensation for Coded Multichannel Optical Transmission

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Title: Iterative Detection and Phase-Noise Compensation for Coded Multichannel Optical Transmission
Authors: Alfredsson, Arni, 1989, Agrell, Erik, 1965, Wymeersch, Henk, 1976
Source: Teknologier for spatiell multiplexning: nästa utmaning inom optisk kommunikation IEEE Transactions on Communications. 67(8):5532-5543
Subject Terms: detection, factor graph, variational Bayesian inference, phase noise, sum-product algorithm
Description: The problem of phase-noise compensation for correlated phase noise in coded multichannel optical transmission is investigated. To that end, a simple multichannel phase-noise model is considered and the maximum a posteriori detector for this model is approximated using two frameworks, namely factor graphs (FGs) combined with the sum–product algorithm (SPA), and a variational Bayesian (VB) inference method. The resulting pilot-aided algorithms perform iterative phase-noise compensation in cooperation with a decoder, using extended Kalman smoothing to estimate the a posteriori phase-noise distribution jointly for all channels. The system model and the proposed algorithms are verified using experimental data obtained from space-division multiplexed multicore-fiber transmission. Through Monte Carlo simulations, the algorithms are further evaluated in terms of phase-noise tolerance for coded transmission. It is observed that they significantly outperform the conventional approach to phase-noise compensation in the optical literature. Moreover, the FG/SPA framework performs similarly or better than the VB framework in terms of phase-noise tolerance of the resulting algorithms, for a slightly higher computational complexity.
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Items – Name: Title
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  Data: Iterative Detection and Phase-Noise Compensation for Coded Multichannel Optical Transmission
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  Data: <searchLink fieldCode="AR" term="%22Alfredsson%2C+Arni%22">Alfredsson, Arni</searchLink>, 1989<br /><searchLink fieldCode="AR" term="%22Agrell%2C+Erik%22">Agrell, Erik</searchLink>, 1965<br /><searchLink fieldCode="AR" term="%22Wymeersch%2C+Henk%22">Wymeersch, Henk</searchLink>, 1976
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  Data: <i>Teknologier for spatiell multiplexning: nästa utmaning inom optisk kommunikation IEEE Transactions on Communications</i>. 67(8):5532-5543
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  Data: <searchLink fieldCode="DE" term="%22detection%22">detection</searchLink><br /><searchLink fieldCode="DE" term="%22factor+graph%22">factor graph</searchLink><br /><searchLink fieldCode="DE" term="%22variational+Bayesian+inference%22">variational Bayesian inference</searchLink><br /><searchLink fieldCode="DE" term="%22phase+noise%22">phase noise</searchLink><br /><searchLink fieldCode="DE" term="%22sum-product+algorithm%22">sum-product algorithm</searchLink>
– Name: Abstract
  Label: Description
  Group: Ab
  Data: The problem of phase-noise compensation for correlated phase noise in coded multichannel optical transmission is investigated. To that end, a simple multichannel phase-noise model is considered and the maximum a posteriori detector for this model is approximated using two frameworks, namely factor graphs (FGs) combined with the sum–product algorithm (SPA), and a variational Bayesian (VB) inference method. The resulting pilot-aided algorithms perform iterative phase-noise compensation in cooperation with a decoder, using extended Kalman smoothing to estimate the a posteriori phase-noise distribution jointly for all channels. The system model and the proposed algorithms are verified using experimental data obtained from space-division multiplexed multicore-fiber transmission. Through Monte Carlo simulations, the algorithms are further evaluated in terms of phase-noise tolerance for coded transmission. It is observed that they significantly outperform the conventional approach to phase-noise compensation in the optical literature. Moreover, the FG/SPA framework performs similarly or better than the VB framework in terms of phase-noise tolerance of the resulting algorithms, for a slightly higher computational complexity.
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        Value: 10.1109/TCOMM.2019.2912569
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      – Text: English
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      – SubjectFull: factor graph
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      – SubjectFull: variational Bayesian inference
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      – SubjectFull: phase noise
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      – SubjectFull: sum-product algorithm
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      – TitleFull: Iterative Detection and Phase-Noise Compensation for Coded Multichannel Optical Transmission
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            NameFull: Alfredsson, Arni
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            NameFull: Agrell, Erik
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            NameFull: Wymeersch, Henk
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              Type: published
              Y: 2019
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            – TitleFull: Teknologier for spatiell multiplexning: nästa utmaning inom optisk kommunikation IEEE Transactions on Communications
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