Simplified coherent optical network units for very-high-speed passive optical networks

被引:11
作者
Kovacs, Istvan Bence [1 ]
Faruk, Md. Saifuddin [2 ]
Torres-Ferrera, Pablo [1 ,3 ]
Savory, Seb J. [1 ]
机构
[1] Univ Cambridge, Dept Engn, Elect Engn Div, 9 JJ Thompson Ave, Cambridge CB3 0FA, England
[2] Bangor Univ, Sch Comp Sci & Engn, Bangor LL57 1UT, England
[3] Infinera, Munich, Germany
基金
英国工程与自然科学研究理事会;
关键词
Standards; Optical network units; Passive optical networks; Costs; Photodiodes; Optical receivers; Optical polarization; INTENSITY MODULATION; PON; POWER; PAM4; DMT;
D O I
10.1364/JOCN.514867
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Future passive optical networks (PONs) for ${200}\;{\rm Gb/s/}\lambda$, and beyond, pose a significant technological challenge. The use of coherent technology in access networks provides a great solution based on concepts from mature technologies to achieve the speeds needed for very-high-speed PON (VHSP). In this paper, we provide an overview of the currently demonstrated technologies and propose a possible simplified optical network unit (ONU) for time division multiplex PON (TDM-PON). The proposed ONU uses a single polarization heterodyne receiver, using either a balanced photodiode or a single-ended one and an electro-absorption modulated laser (EML)-based transmitter. The experimental demonstration using the proposed ONU in a bidirectional, symmetrical transmission over fiber distances of 20 km and 40 km shows the viability of the technology. The downstream direction achieves a power budget of 34.3/29.3 dB for 20 km and 33.9/29 dB for 40 km, for a balanced/single-ended receiver, whereas the upstream transmission achieves 29.3 dB for both scenarios.
引用
收藏
页码:C1 / C10
页数:10
相关论文
共 50 条
  • [1] A simple transmit diversity technique for wireless communications
    Alamouti, SM
    [J]. IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 1998, 16 (08) : 1451 - 1458
  • [2] [Anonymous], 2021, ITU T RECOMMENDATION
  • [3] [Anonymous], 2023, ITU-T Recommendation G.698.1
  • [4] Optimization of multiple PON deployment costs and comparison between GPON, XGPON, NGPON2 and UDWDM PON
    Arevalo, German V.
    Hincapie, Roberto C.
    Gaudino, Roberto
    [J]. OPTICAL SWITCHING AND NETWORKING, 2017, 25 : 80 - 90
  • [5] Baier M, 2018, 2018 EUROPEAN CONFERENCE ON OPTICAL COMMUNICATION (ECOC)
  • [6] Bonk R, 2018, 2018 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXPOSITION (OFC)
  • [7] 200Gb/s Bi-Directional TDM-PON with 29-dB Power Budget
    Che, Di
    Iannone, Patrick
    Raybon, Gregory
    Matsui, Yasuhiro
    [J]. 2021 EUROPEAN CONFERENCE ON OPTICAL COMMUNICATION (ECOC), 2021,
  • [8] Enhancement of Optical-Feedback Tolerance of SOA-Integrated EML (AXEL) by Introducing DBR-Type Laser
    Chen, Mingchen
    Shindo, Takahiko
    Kanazawa, Shigeru
    Nada, Masahiro
    Nakanishi, Yasuhiko
    Nakamura, Hirotaka
    [J]. IEEE PHOTONICS TECHNOLOGY LETTERS, 2022, 34 (09) : 502 - 505
  • [9] High-power SOA-integrated EADFB laser for long-reach passive optical network systems
    Chen, Mingchen
    Shindo, Takahiko
    Kanazawa, Shigeru
    Nakanishi, Yasuhiko
    Kanda, Atsushi
    Yoshimatsu, Toshihide
    Sano, Kimikazu
    [J]. OSA CONTINUUM, 2021, 4 (02): : 498 - 506
  • [10] Performance Comparison of 112-Gb/s DMT, Nyquist PAM4, and Partial- Response PAM4 for Future 5G Ethernet-Based Fronthaul Architecture
    Eiselt, Nicklas
    Muench, Daniel
    Dochhan, Annika
    Griesser, Helmut
    Eiselt, Michael
    Olmos, Juan Jose Vegas
    Monroy, Idelfonso Tafur
    Elbers, Joerg-Peter
    [J]. JOURNAL OF LIGHTWAVE TECHNOLOGY, 2018, 36 (10) : 1807 - 1814