• Study On Optical Communications
  • Vol. 50, Issue 1, 23014301 (2024)
Ji ZHOU1, Dong GUO2, and Junwen ZHANG3,*
Author Affiliations
  • 1College of Information Science and Technology, Jinan University, Guangzhou 510632, China
  • 2School of Information and Electronics, Beijing Institute of Technology, Beijing 100081, China
  • 3School of Information Science and Technology, Fudan University, Shanghai 200433, China
  • show less
    DOI: 10.13756/j.gtxyj.2024.230143 Cite this Article
    Ji ZHOU, Dong GUO, Junwen ZHANG. Beyond 100 Gbit/s PON: Flexible Rate and Coherent Architecture[J]. Study On Optical Communications, 2024, 50(1): 23014301 Copy Citation Text show less
    References

    [2] Bonk R, Geng D, Khotimsky D et al. 50G-PON: The First ITU-T Higher-speed PON System[J]. IEEE Communications Magazine, 60, 48-54(2022).

    [4] Wang H, Mo W, Liu G et al. Performance Comparison of OOK, PAM4 and DMT for 50Gb/s Passive Optical Networks[C], 821-825(2022).

    [5] Parolari P, Gatto A, Neumeyr C et al. Flexible Transmitters based on Directly Modulated VCSELs for Next-generation 50 G Passive Optical Networks[J]. Journal of Optical Communications and Networking, 12, D78-D85(2020).

    [6] Borkowski R, Straub M, Ou Y et al. FLCS-PON–A 100 Gbit/s Flexible Passive Optical Network: Concepts and Field Trial[J]. Journal of Lightwave Technology, 39, 5314-5324(2021).

    [7] Borkowski R, Straub M, Ou Y et al. World’s First Field Trial of 100 Gbit/s Flexible PON (FLCS-PON)[C], 1-4(2020).

    [8] Liu G, Wang G, Huang Y et al. World’s First Demonstration of Real-time Symmetric Flexible Rate PON with Entropy-loading and 10G-class Optics[C], 1-4(2022).

    [9] Liu G, Zhou J, Huang Y et al. Flexible Transceiver for an Access Network: a Multicarrier Entropy Loading Approach[J]. Journal of Optical Communications and Networking, 15, 442-448(2023).

    [10] Mo W, Zhou J, Liu G et al. Simplified LDPC-assisted CNC Algorithm for Entropy-loaded Discrete Multi-tone in a 100 G Flexible-rate PON[J]. Optics Express, 31, 6956-6964(2023).

    [11] Zhou J, He J, Lu X et al. First 100 Gb/s Fine-Granularity Flexible-Rate PON based on Discrete Multi-tone and PAPR Optimization[C], Th2A.23(2022).

    [12] Zhou J, He J, Lu X et al. 100G Fine-granularity Flexible-rate Passive Optical Networks based on Discrete Multi-tone with PAPR Optimization[J]. Journal of Optical Communications and Networking, 14, 944-950(2022).

    [13] Xing Z, Zhang K, Chen X et al. First Real-time Demonstration of 200G TFDMA Coherent PON Using Ultra-simple ONUs[C], 1-3(2023).

    [14] Faruk M S, Li X, Nesset D et al. Coherent Passive Optical Networks: Why, When, and How[J]. IEEE Communications Magazine, 59, 112-117(2021).

    [15] Zhang J, Jia Z. Coherent Passive Optical Networks for 100G/λ-and-beyond Fiber Access: Recent Progress and Outlook[J]. IEEE Network, 36, 116-123(2022).

    [16] Zhang J, Jia Z, Zhang H et al. Rate-flexible Single-wavelength TFDM 100 G Coherent PON based on Digital Subcarrier Multiplexing Technology[C], 1-3(2020).

    [17] Xu M, Jia Z, Zhang H et al. Intelligent Burst Receiving Control in 100 G Coherent PON with 4× 25 G TFDM Upstream Transmission[C], Th3E.2(2022).

    [18] Faruk M S, Li X, Savory S J. Experimental Demonstration of 100/200-Gb/s/λ PON Downstream Transmission Using Simplified Coherent Receivers[C], Th3E.5(2022).

    [19] Erklllnç M S, Lavery D, Shi K et al. Bidirectional Wavelength-division Multiplexing Transmission over Installed Fibre Using a Simplified Optical Coherent Access Transceiver[J]. Nature Communications, 8, 1043(2017).

    [20] Matsumoto R, Matsuda K, Suzuki N. Burst-mode Coherent Detection Using Fast-fitting Pilot Sequence for 100-Gb/s M Coherent TDM-PON System[C], 1-3(2017).

    [21] Zhang J, Jia Z, Xu M et al. Efficient Preamble Design and Digital Signal Processing in Upstream Burst-mode Detection of 100 G TDM Coherent-PON[J]. Journal of Optical Communications and Networking, 13, A135-A143(2021).

    [22] Wang H, Zhou J, Xing Z et al. Fast-Convergence Digital Signal Processing for Coherent PON Using Digital SCM[J]. Journal of Lightwave Technology, 41, 4635-4643(2023).

    Ji ZHOU, Dong GUO, Junwen ZHANG. Beyond 100 Gbit/s PON: Flexible Rate and Coherent Architecture[J]. Study On Optical Communications, 2024, 50(1): 23014301
    Download Citation