Optical Communication Technology, Volume. 47, Issue 1, 8(2023)
Research on probabilistic shaping algorithm in visible light communication
[1] [1] CHI N, ZHOUY J, WEI Y R, et al. Visible light communication in 6G: advances, challenges, and prospects[J]. IEEE Vehicular Technology Magazine, 2020, 15(4): 93-102.
[2] [2] MATHEUSL EM, VIEIRAA B, VIEIRALFM, et al. Visible light communication: concepts, applications and challenges[J]. IEEE Communications Surveys & Tutorials, 2019, 21(4): 3204-3237.
[3] [3] KATZ M, AHMED I. Opportunities and challenges for visible light communications in 6G[C]//2020 2nd 6G Wireless Summit(6G SUMMIT), March 17-20, 2020, Levi, Finland.Piscataway: IEEE, 2020: 1-5.
[5] [5] FEHENBERGER T, LAVERY D, MAHER R, et al. Sensitivity gains by mismatched probabilistic shaping for optical communication systems[J]. IEEE Photonics Technology Letters, 2016, 28(7): 786-789.
[7] [7] QU Z, ZHANG S L, B I. Universal hybrid probabilistic-geometric shaping based on two-dimensional distribution matchers[C]//2018 Optical Fiber Communications Conference and Exposition(OFC), March 11-15, 2018, San Diego, CA, USA. Piscataway: IEEE, 2018: 1-3.
[8] [8] CHO J, WINZER P J. Probabilistic constellation shaping for optical fiber communications[J]. Journal of Lightwave Technology, 2019, 37(6): 1590-1607.
[10] [10] FALLAHPOUR A, ALISHAHI F, MINOOFAR A, et al. 16-QAM probabilistic constellation shaping by adaptively modifying the distribution of transmitted symbols based on errors at the receiver[J]. Optics Letters, 2020, 45(18): 5283-5286.
[12] [12] SHI J, WANG Y, CHI N, et al. Enhanced performance using STBC aided coding for LED-based multiple input single output visible light communication network[J]. Microwave & Optical Technology Letters, 2015, 57(12): 2943-2946.
[13] [13] NARMANLIOGLU O, KIZILIRMAK R C, BAYKAS T, et al. Link adaptation for MIMO OFDM visible light communication systems[J]. IEEE Access, 2017(5): 26006-26014.
[14] [14] ANAND P K, JAIN S, MITRA R, et al. Random fourier features based post-distortion for massive-MIMO bisible light communication[C]//2020 International Conference on Communications, Signal Processing, and Their Applications(ICCSPA), March 16-18, 2021, Sharjah, United Arab Emirates. Piscataway: IEEE, 2021: 1-6.
[16] [16] QU Z, DJORDJEVIC I B. On the probabilistic shaping and geometric shaping in optical communication systems[J]. IEEE Access, 2019(7): 21454-21464.
[18] [18] XING S, HU F, LI G, et al. Demonstration of flexible access in a rate-adaptive visible light communication system with constellation probabilistic shaping[J]. Optics Express, 2021, 29(21): 34441-34451.
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PAN Chao, LUO Ye, GUO Xinyue. Research on probabilistic shaping algorithm in visible light communication[J]. Optical Communication Technology, 2023, 47(1): 8
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Received: Jun. 20, 2022
Accepted: --
Published Online: Mar. 30, 2023
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