Device technology development for beyond 100G optical transport network

被引:0
|
作者
Tomizawa, Masahito [1 ]
Kaneko, Akimasa [2 ]
Kimura, Shunji [3 ]
机构
[1] Photonic Transport Network Laboratory, NTT Network Innovation Laboratories, Japan
[2] Photonic Network Device Project, NTT Device Innovation Center, Japan
[3] Metro-Access Network Device Project, NTT Device Innovation Center, Japan
来源
NTT Technical Review | 2016年 / 14卷 / 09期
关键词
Beyond 100G - Communication environments - Communication lines - Communication service - Device technologies - Mobile access - NTT laboratories - Optical transport networks;
D O I
暂无
中图分类号
学科分类号
摘要
The capacity of the optical transport network has been expanding for over 30 years, which has enriched the communication environment of users. This expansion has also helped to reduce the cost of communication lines and facilitate the growth of the Internet and the widespread use of smartphones. In the near future, an optical transport network with a capacity beyond 100 Gbit/s per wavelength (beyond 100G optical transport network) and its device technology will be needed in order to provide more sophisticated communication services such as IoT (Internet of Things) and 5G (fifth-generation) mobile access. This article reviews NTT laboratories' development of device technology for the beyond 100G optical transport network.
引用
收藏
相关论文
共 50 条
  • [41] Soft Decision FEC for 100G Transport Systems
    Onohara, Kiyoshi
    Miyata, Yoshikuni
    Sugihara, Takashi
    Kubo, Kazuo
    Yoshida, Hideo
    Mizuochi, Takashi
    2010 CONFERENCE ON OPTICAL FIBER COMMUNICATION OFC COLLOCATED NATIONAL FIBER OPTIC ENGINEERS CONFERENCE OFC-NFOEC, 2010,
  • [42] Advanced digital signal processing for short haul optical fiber transmission beyond 100G
    Kikuchi, Nobuhiko
    OPTICAL METRO NETWORKS AND SHORT-HAUL SYSTEMS IX, 2017, 10129
  • [43] Beyond 100G: All-Optical Processor for High-Capacity Access∼Networks
    Brestas, George
    Kanakis, Giannis
    Spyropoulou, Maria
    Avramopoulos, Hercules
    PHOTONICS, 2024, 11 (07)
  • [44] Optical transport network design beyond 100 Gbaud [Invited]
    Pedro, Joao
    Costa, Nelson
    Pato, Silvia
    JOURNAL OF OPTICAL COMMUNICATIONS AND NETWORKING, 2020, 12 (02) : A123 - A134
  • [45] Field trial for the mixed bit rate at 100G and beyond
    Yu, Jianjun
    Jia, Zhensheng
    Dong, Ze
    Chien, Hung-Chang
    NEXT-GENERATION OPTICAL COMMUNICATION: COMPONENTS, SUB-SYSTEMS, AND SYSTEMS II, 2013, 8647
  • [46] Software-Defined, Virtualized Networking and Beyond 100G
    Takahara, Atsushi
    2015 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION (OFC), 2015,
  • [47] Cognitive Power Management in 100G Optical Transponders
    Rozental, V. N.
    Bruno, G.
    Lombardi, G.
    Grosso, R.
    Alping, A.
    Mello, D. A. A.
    2012 14TH INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS (ICTON 2012), 2012,
  • [48] Demonstration of an optical spring in the 100g mirror regime
    Edgar, M. P.
    Macarthur, J.
    Barr, B. W.
    Hild, S.
    Huttner, S.
    Sorazu, B.
    Strain, K. A.
    CLASSICAL AND QUANTUM GRAVITY, 2016, 33 (07)
  • [49] Integrated Package for 100G Ethernet Optical Transmitter
    Yasui, Nobuyuki
    Shibuya, Koji
    Murao, Tadashi
    Yamatoya, Takeshi
    Mochizuki, Keita
    Aruga, Hiroshi
    2012 2ND IEEE CPMT SYMPOSIUM JAPAN, 2012,
  • [50] Semtech, MultiPhy partner on 100G optical modules
    不详
    PHOTONICS SPECTRA, 2016, 50 (03) : 18 - 19