• Chinese Optics Letters
  • Vol. 21, Issue 5, 050602 (2023)
Hongyu Huang, Zhenming Yu*, Liang Shu, Kaixuan Sun, Feifei Yin, and Kun Xu
Author Affiliations
  • State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China
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    DOI: 10.3788/COL202321.050602 Cite this Article Set citation alerts
    Hongyu Huang, Zhenming Yu, Liang Shu, Kaixuan Sun, Feifei Yin, Kun Xu. Low-resolution optical transmission using joint shaping technique of signal probability and quantization noise[J]. Chinese Optics Letters, 2023, 21(5): 050602 Copy Citation Text show less
    (a) Z-domain structure of the EFNS. (b) Linear model of clipping and quantization. (c) Z-domain structure of the EFNS based on a linear model.
    Fig. 1. (a) Z-domain structure of the EFNS. (b) Linear model of clipping and quantization. (c) Z-domain structure of the EFNS based on a linear model.
    Quantization noise of the PSD.
    Fig. 2. Quantization noise of the PSD.
    Constellations of the uniform signals and the PS signals.
    Fig. 3. Constellations of the uniform signals and the PS signals.
    (a) Experimental setup of the IM/DD PAM4 transmission. (b) DSP flow in the transmitter. (c) DSP flow in the receiver. PRBS, pseudo-random binary sequence.
    Fig. 4. (a) Experimental setup of the IM/DD PAM4 transmission. (b) DSP flow in the transmitter. (c) DSP flow in the receiver. PRBS, pseudo-random binary sequence.
    (a) BER vs. PNOB when the ROP is −3 dBm. (b) BER vs. ROP when the PNOB is 3. (c) BER vs. ROP when the PNOB is 4.
    Fig. 5. (a) BER vs. PNOB when the ROP is −3 dBm. (b) BER vs. ROP when the PNOB is 3. (c) BER vs. ROP when the PNOB is 4.
    (a) Experimental setup of the coherent DP-16QAM transmission process. (b) DSP process at the transmitter. (c) DSP process at the receiver. CD, chromatic dispersion; CMA, constant modulus algorithm; CPR, carrier phase recovery; DD-LMS, decision directed least mean square; LO, local oscillator.
    Fig. 6. (a) Experimental setup of the coherent DP-16QAM transmission process. (b) DSP process at the transmitter. (c) DSP process at the receiver. CD, chromatic dispersion; CMA, constant modulus algorithm; CPR, carrier phase recovery; DD-LMS, decision directed least mean square; LO, local oscillator.
    (a) BER vs. PNOB when the OSNR is 30 dB. (b) BER vs. OSNR when the PNOB is 3. (c) BER vs. OSNR when the PNOB is 4.
    Fig. 7. (a) BER vs. PNOB when the OSNR is 30 dB. (b) BER vs. OSNR when the PNOB is 3. (c) BER vs. OSNR when the PNOB is 4.
    (a) GMI performance under different SNRs and PS degrees, which have been normalized to each SNR (The value ranges from 0 to 1, where 0 represents the lowest GMI, and 1 represents the highest GMI). (b) The SNR and the MI of the signals without EFNS. (c) The SNR and the MI of the signals with EFNS.
    Fig. 8. (a) GMI performance under different SNRs and PS degrees, which have been normalized to each SNR (The value ranges from 0 to 1, where 0 represents the lowest GMI, and 1 represents the highest GMI). (b) The SNR and the MI of the signals without EFNS. (c) The SNR and the MI of the signals with EFNS.
    Comparison between the combined PS and DRE and the joint shaping.
    Fig. 9. Comparison between the combined PS and DRE and the joint shaping.
    Hongyu Huang, Zhenming Yu, Liang Shu, Kaixuan Sun, Feifei Yin, Kun Xu. Low-resolution optical transmission using joint shaping technique of signal probability and quantization noise[J]. Chinese Optics Letters, 2023, 21(5): 050602
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