• Chinese Optics Letters
  • Vol. 21, Issue 2, 020602 (2023)
Yi Liu1, Ming Chen2, Pingyuan Liang1, Taoyun Zhou1, Shan Qiu1, and Yun Cheng1、*
Author Affiliations
  • 1Department of Information Science and Engineering, Hunan University of Humanities, Science and Technology, Loudi 417000, China
  • 2School of Physics and Electronics, Hunan Normal University, Changsha 410081, China
  • show less
    DOI: 10.3788/COL202321.020602 Cite this Article Set citation alerts
    Yi Liu, Ming Chen, Pingyuan Liang, Taoyun Zhou, Shan Qiu, Yun Cheng. OCT-based partial data-carrying subcarriers precoding and ISFA-enabled DMT-VLC system[J]. Chinese Optics Letters, 2023, 21(2): 020602 Copy Citation Text show less
    Schematic diagram of the proposed FDSP scheme in the DMT transmission system.
    Fig. 1. Schematic diagram of the proposed FDSP scheme in the DMT transmission system.
    (a) Experimental setup. Insets are (b) the output power versus bias current and (c) the spectrum of the received DMT signal.
    Fig. 2. (a) Experimental setup. Insets are (b) the output power versus bias current and (c) the spectrum of the received DMT signal.
    SNR performance versus bias current for different IFFT sizes.
    Fig. 3. SNR performance versus bias current for different IFFT sizes.
    BER performance versus bias current for different IFFT sizes.
    Fig. 4. BER performance versus bias current for different IFFT sizes.
    BER performance versus number of ISFA taps for different IFFT sizes.
    Fig. 5. BER performance versus number of ISFA taps for different IFFT sizes.
    SC SNR for conventional DMT signals: (a) without TD-CLC; (b) with TD-CLC.
    Fig. 6. SC SNR for conventional DMT signals: (a) without TD-CLC; (b) with TD-CLC.
    Estimated SC SNR for three kinds of DMT signal schemes.
    Fig. 7. Estimated SC SNR for three kinds of DMT signal schemes.
    Recovered 16QAM constellations and their EVM values: (a) conventional without ISFA; (b) conventional with ISFA; (c) FDSP without ISFA; (d) FDSP with ISFA; (e) PDSP without ISFA; (f) PDSP with ISFA.
    Fig. 8. Recovered 16QAM constellations and their EVM values: (a) conventional without ISFA; (b) conventional with ISFA; (c) FDSP without ISFA; (d) FDSP with ISFA; (e) PDSP without ISFA; (f) PDSP with ISFA.
    BER performance versus bias current for different DMT signals.
    Fig. 9. BER performance versus bias current for different DMT signals.
    Precoding SchemeAccording to Eq. (1)FFT-based Fast Algorithm[23]
    Real Mult.Real Add.Real Mult.Real Add.
    FDSP4M24M2 − 2M
    PDSP4L24L2 − 2LL log2(L) + 5L + 43L log2(L) + L + 4
    Table 1. FDSP/PDSP Computational Complexity Analysis
    ParameterValueUnit
    FDSPPDSP
    Modulation format16QAM
    IFFT/FFT size1024Points
    Data SCs384384
    Precoded data SCs384256
    CP/CS length32
    TS per frame1
    DMT symbols per frame400
    Clipping ratio (CR)12dB
    Bandwidth0.94GHz
    Net bit rate3.52Gb/s
    Spectral efficiency3.75(b/s)/Hz
    Table 2. Some Key Parameters of the Precoded DMT Frame
    Yi Liu, Ming Chen, Pingyuan Liang, Taoyun Zhou, Shan Qiu, Yun Cheng. OCT-based partial data-carrying subcarriers precoding and ISFA-enabled DMT-VLC system[J]. Chinese Optics Letters, 2023, 21(2): 020602
    Download Citation