Adaptive Bayes-Adam MIMO Equalizer With High Accuracy and Fast Convergence for Orbital Angular Momentum Mode Division Multiplexed Transmission
Author:
Affiliation:
1. School of Information and Electronics, Beijing Institute of Technology, Beijing, China
2. Key Laboratory of Noise and Vibration, Institute of Acoustics, Chinese Academy of Sciences, Beijing, China
Funder
National Key R&D Program of China from the Ministry of Science and Technology
National Natural Science Foundation of China for Excellent Young Scholars
National Natural Science Foundation of China
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Atomic and Molecular Physics, and Optics
Link
http://xplorestaging.ieee.org/ielx7/50/10190599/10066874.pdf?arnumber=10066874
Reference27 articles.
1. Analysis of modal coupling due to birefringence and ellipticity in strongly guiding ring-core OAM fibers
2. Seven air-core fibers with germanium-doped high-index rings supporting hundreds of OAM modes
3. MIMO equalization for few-mode fiber transmission systems
4. Efficient adaptive filtering techniques using hybrid RLS-LMS algorithm for channel equalization in optical few-mode fiber communication systems
5. Characterization of LDPC-coded orbital angular momentum modes transmission and multiplexing over a 50-km fiber
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1. End-to-end learning strategy based on a frequency domain feature decoupling network emulator with joint probabilistic shaping and equalization for a 300-Gbit/s OAM mode division multiplexing transmission;Optics Express;2024-03-29
2. ExtraTrees-hidden Markov model based equalizer for mode division multiplexing ring-core fiber communication with non-orthogonal MultiCAP modulation;Optics Express;2024-03-28
3. Equalization system of low differential mode delay few-mode fibers based on the neural network MIMO algorithm;Optics Express;2024-03-07
4. Low-Complexity Pruned Convolutional Neural Network Based Nonlinear Equalizer in Coherent Optical Communication Systems;Electronics;2023-07-18
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