Two-stage artificial neural network-based burst-subcarrier joint equalization in nonlinear frequency division multiplexing systems
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Title
Two-stage artificial neural network-based burst-subcarrier joint equalization in nonlinear frequency division multiplexing systems
Authors
Keywords
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Journal
OPTICS LETTERS
Volume 46, Issue 7, Pages 1700
Publisher
The Optical Society
Online
2021-03-03
DOI
10.1364/ol.422195
References
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Related references
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- High Speed Precompensated Nonlinear Frequency-Division Multiplexed Transmissions
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- (2018) Stella Civelli et al. OPTICS EXPRESS
- Why Noise and Dispersion May Seriously Hamper Nonlinear Frequency-Division Multiplexing
- (2017) Stella Civelli et al. IEEE PHOTONICS TECHNOLOGY LETTERS
- Nonlinear Compensation in Optical Communications Systems With Normal Dispersion Fibers Using the Nonlinear Fourier Transform
- (2017) Ivan T. Lima et al. JOURNAL OF LIGHTWAVE TECHNOLOGY
- Alternative Decoding Methods for Optical Communications Based on Nonlinear Fourier Transform
- (2017) Tao Gui et al. JOURNAL OF LIGHTWAVE TECHNOLOGY
- Nonlinear signal multiplexing for communication beyond the Kerr nonlinearity limit
- (2017) Son Thai Le et al. Nature Photonics
- Nonlinear Fourier transform for optical data processing and transmission: advances and perspectives
- (2017) Sergei K. Turitsyn et al. Optica
- Capacity estimates for optical transmission based on the nonlinear Fourier transform
- (2016) Stanislav A. Derevyanko et al. Nature Communications
- Information Transmission Using the Nonlinear Fourier Transform, Part I: Mathematical Tools
- (2014) Mansoor I Yousefi et al. IEEE TRANSACTIONS ON INFORMATION THEORY
- Intra-symbol frequency-domain averaging based channel estimation for coherent optical OFDM
- (2008) Xiang Liu et al. OPTICS EXPRESS
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