• Study On Optical Communications
  • Vol. 50, Issue 3, 23007701 (2024)
Kejun JIA1,*, Lei LEI1, Ying LIN1, and Caihong YU2
Author Affiliations
  • 1School of Computer and Communication, Lanzhou University of Technology, Lanzhou 730050, China
  • 2School of Electronic Electrical Engineering and Physics, Fujian University of Technology, Fuzhou 366000, China
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    DOI: 10.13756/j.gtxyj.2024.230077 Cite this Article
    Kejun JIA, Lei LEI, Ying LIN, Caihong YU. Design and Study of Memory Polynomial-based Volterra Hybrid Equalizer[J]. Study On Optical Communications, 2024, 50(3): 23007701 Copy Citation Text show less
    References

    [1] Jia K J[M]. Study on the Indoor Visible Light Communications base on Optical OFDM and Related Technologies(2019).

    [2] Jia K, Qin C, Yang B et al. An Adaptive Iterative Symbol Clipping Scheme for OFDM-based Visible Light Communication[J]. Wireless Personal Communications, 128, 2531-2547(2023).

    [3] Kim J K, Hyun K, Park S K. Adaptive Predistorter Using NLMS Algorithm for Nonlinear Compensation in Visible-Light Communication System[J]. Electronics Letters, 50, 1457-1459(2014).

    [4] Mitra R, Bhatia V. Chebyshev Polynomial-based Adaptive Predistorter for Nonlinear LED Compensation in VLC[J]. IEEE Photonics Technology Letters, 28, 1053-1056(2016).

    [5] Chen C, Nie Y, Liu M et al. Digital Pre-equalization for OFDM-based VLC Systems: Centralized or Distributed?[J]. IEEE Photonics Technology Letters, 33, 1081-1084(2021).

    [6] Lu X, Zhao M, Qiao L et al. Non-linear Compensation of Multi-CAP VLC System Employing Pre-distortion base on Clustering of Machine Learning[C], M2K.1(2018).

    [7] Qian H, Yao S J, Cai S Z et al. Adaptive Postdistortion for Nonlinear LEDs in Visible Light Communications[J]. IEEE Photonics Journal, 6, 1-8(2014).

    [8] Deng X, Mardanikorani S, Arulandu K et al. Novel Post-distortion to Mitigate LED Nonlinearity in High-speed Visible Light Communications[C], 1-6(2018).

    [9] Wang Y, Tao L, Huang X et al. Enhanced Performance of a High-speed WDM CAP64 VLC System Employing Volterra Series-based Nonlinear Equalizer[J]. IEEE Photonics Journal, 7, 1-7(2015).

    [10] Stepniak G, Siuzdak J, Zwierko P. Compensation of a VLC Phosphorescent White LED Nonlinearityby Means of Volterra DFE[J]. IEEE Photonics Technology Letters, 25, 1597-1600(2013).

    [11] Wang Y, Tao L, Huang X et al. 8-Gb/s RGBY LED-based WDM VLC System Employing High-order CAP Modulation and Hybrid Post Equalizer[J]. IEEE Photonics Journal, 7, 1-7(2015).

    [12] Jia K, Yang B, Cao M et al. An Adaptive Symbol Decomposition with Serial Transmission for O-OFDM-based VLC System[J]. IEEE Communications Letters, 25, 916-920(2020).

    [13] Chi N, Zhang M J, Shi J Y. Research on LED Nonlinear Distortion Compensation Algorithm in Visible Light Communication[J]. Optics & Optoelectronic Technology, 13, 9-14(2015).

    [14] Li X, Chen H, Li S et al. Volterra-based Nonlinear Equalization for Nonlinearity Mitigation in Organic VLC[C], 616-621(2017).

    Kejun JIA, Lei LEI, Ying LIN, Caihong YU. Design and Study of Memory Polynomial-based Volterra Hybrid Equalizer[J]. Study On Optical Communications, 2024, 50(3): 23007701
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