Channel estimation-based time-frequency neural network for post-equalization in underwater visible light communication
Author:
Publisher
Shanghai Institute of Optics and Fine Mechanics
Link
https://www.researching.cn/ArticlePdf/m00005/2024/22/6/060602.pdf
Reference15 articles.
1. A review on practical considerations and solutions in underwater wireless optical communication;C. H. Kang;J. Lightwave Technol.,2020
2. Visible light communication in 6G: advances, challenges, and prospects;N. Chi;IEEE Veh. Technol. Mag.,2020
3. 31.38 Gb/s GaN-based LED array visible light communication system enhanced with V-pit and sidewall quantum well structure;Y. Liu;Opto-Electron. Sci.,2023
4. Net 5.75 Gbps/2 m single-pixel blue mini-LED based underwater wireless communication system enabled by partial pre-emphasis and nonlinear pre-distortion;Z. Wei;J. Lightwave Technol.,2022
5. 7-M/130-Mbps LED-to-LED underwater wireless optical communication based on arrays of series-connected LEDs and a coaxial lens group;H. Zhang;J. Lightwave Technol.,2022
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