• Laser & Optoelectronics Progress
  • Vol. 58, Issue 23, 2306005 (2021)
Lijie Zhang1 and Qi Sui1、2、*
Author Affiliations
  • 1Institute of Photonics Technology, Jinan University, Guangzhou , Guangdong 511443, China
  • 2Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai), Zhuhai , Guangdong 511458, China
  • show less
    DOI: 10.3788/LOP202158.2306005 Cite this Article Set citation alerts
    Lijie Zhang, Qi Sui. Dynamic Probabilistic Shaping Technique Based on Intensity Modulation Direct Detection System[J]. Laser & Optoelectronics Progress, 2021, 58(23): 2306005 Copy Citation Text show less
    References

    [1] Kachris C, Tomkos I. A survey on optical interconnects for data centers[J]. IEEE Communications Surveys & Tutorials, 14, 1021-1036(2012).

    [2] Ferdouse L, Anpalagan A, Erkucuk S. Joint communication and computing resource allocation in 5G cloud radio access networks[J]. IEEE Transactions on Vehicular Technology, 68, 9122-9135(2019).

    [3] Liu B, Li L N. Development status of large-capacity optical transmission systems[J]. Science & Technology Review, 34, 20-33(2016).

    [4] Lü X D, Liang X R, Yu Q C et al. Research status and development trend of optical communication technology[J]. Telecommunications Science, 35, 70-78(2019).

    [5] Temprana E, Alic N, Kuo B P P et al. Beating the nonlinear capacity limit[J]. Optics and Photonics News, 27, 30-37(2016).

    [6] Lin Z Y, Yang Y F, Xiang Q et al. Adaptive carrier phase recovery algorithm for probabilistically shaped signals[J]. Acta Optica Sinica, 40, 2306001(2020).

    [7] Ma B B, Ke X Z, Zhang Y. Polarization control and control algorithm of beams in coherent optical communication system[J]. Chinese Journal of Lasers, 46, 0106002(2019).

    [8] Ren J Y, Sun H Y, Zhao Y Z et al. Influence of intensity disturbance on the performance of dual-frequency laser coherent detection[J]. Laser & Optoelectronics Progress, 57, 031407(2020).

    [9] Zhou X, Huo J H, Zhong K P et al. Polarization division multiplexing system with direct decision for short reach optical communications[J]. Journal of Beijing University of Posts and Telecommunications, 40, 21-28(2017).

    [10] Lu J Z, Ji F J, Hu R et al. Research on frequency domain equalization technology of light intensity modulation-direct detection system[J]. Optical Communications Research, 5-7(2016).

    [11] Wei J L, Rahman T, Calabrò S et al. Experimental demonstration of advanced modulation formats for data center networks on 200 Gb/s lane rate IMDD links[J]. Optics Express, 28, 35240-35250(2020).

    [12] Böcherer G, Steiner F, Schulte P. Bandwidth efficient and rate-matched low-density parity-check coded modulation[J]. IEEE Transactions on Communications, 63, 4651-4665(2015).

    [13] Baur S, Boecherer G. Arithmetic distribution matching[C](2015).

    [14] Schulte P, Böcherer G. Constant composition distribution matching[J]. IEEE Transactions on Information Theory, 62, 430-434(2016).

    [15] Cho J, Winzer P J. Probabilistic constellation shaping for optical fiber communications[J]. Journal of Lightwave Technology, 37, 1590-1607(2019).

    [16] Li J J, Zhang A X, Zhang C L et al. Field trial of probabilistic-shaping-programmable real-time 200-Gb/s coherent transceivers in an intelligent core optical network[C](2018).

    [17] Roberts K, Zhuge Q B, Monga I et al. Beyond 100 Gb/s: capacity, flexibility, and network optimization[J]. IEEE/OSA Journal of Optical Communications and Networking, 9, C12-C23(2017).

    [18] Shannon C E. A mathematical theory of communication[J]. Bell System Technical Journal, 27, 379-423(1948).

    [19] Cho J, Chen X, Chandrasekhar S et al. Trans-Atlantic field trial using high spectral efficiency probabilistically shaped 64-QAM and single-carrier real-time 250-Gb/s 16-QAM[J]. Journal of Lightwave Technology, 36, 103-113(2018).

    [20] Cho J, Chandrasekhar S, Raybon G et al. High spectral efficiency optical transmission with probabilistic constellation shaping[C](2018).

    [21] Hong X, Fei C, Zhang G et al. Discrete multitone transmission for underwater optical wireless communication system using probabilistic constellation shaping to approach channel capacity limit[J]. Optics Letters, 44, 558-561(2019).

    [22] He Z L, Bo T W, Kim H. Probabilistically shaped coded modulation for IM/DD system[J]. Optics Express, 27, 12126-12136(2019).

    Lijie Zhang, Qi Sui. Dynamic Probabilistic Shaping Technique Based on Intensity Modulation Direct Detection System[J]. Laser & Optoelectronics Progress, 2021, 58(23): 2306005
    Download Citation