Wide-passband wavelength division multiplexing (WWDM) systems for metropolitan area and access networks

被引:0
作者
Ogawa, T [1 ]
Yoshihara, O [1 ]
Sugie, T [1 ]
机构
[1] NTT Corp, NTT Access Network Serv Syst Labs, Chiyoda Ku, Tokyo 100, Japan
来源
NTT REVIEW | 2002年 / 14卷 / 01期
关键词
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The current progress being made on various broadband services and applications will inevitably result in the development of cost-effective and flexible networks. Wide-passband WDM (WWDM) is one of the most attractive system technologies for providing such services and increasing traffic in metropolitan area and access networks. This article describes the principle of WWDM technology and its systems, which we have developed and also cost-effective DWDM for long-distance transmission with optical amplifiers.
引用
收藏
页码:32 / 36
页数:5
相关论文
共 50 条
  • [21] Implementation of coarse wavelength division multiplexing multi-wavelength routing switch core for storage area networks
    Chou, H. -H.
    Wilkinson, T. D.
    Collings, N.
    Crossland, W. A.
    Chou, H. -T.
    [J]. IET OPTOELECTRONICS, 2010, 4 (02) : 64 - 77
  • [22] Performance analysis of wavelength division multiplexing mesh networks
    Maier, G
    Martinelli, M
    Pattavina, A
    Pierpaoli, M
    [J]. OPTICAL NETWORKING, 1999, : 52 - 63
  • [23] DENSE WAVELENGTH DIVISION MULTIPLEXING NETWORKS - PRINCIPLES AND APPLICATIONS
    BRACKETT, CA
    [J]. IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 1990, 8 (06) : 948 - 964
  • [24] Entangled-Based Quantum Wavelength-Division-Multiplexing and Multiple-Access Networks
    Bathaee, Marzieh
    Salehi, Jawad A.
    [J]. ENTROPY, 2023, 25 (12)
  • [25] Entanglement and wavelength division multiplexing for quantum cryptography networks
    Brassard, G
    Bussières, F
    Godbout, N
    Lacroix, S
    [J]. QUANTUM COMMUNICATION, MEASUREMENT AND COMPUTING, 2004, 734 : 323 - 326
  • [26] Fast switching tunable laser sources for wavelength division multiplexing in passive optical access networks
    Roycroft, B.
    Mondal, S. K.
    Lambkin, P.
    Engelstaedter, P.
    Corbett, B.
    Peters, F. H.
    Smyth, F.
    Barry, L.
    Phelan, R.
    Donegan, J. F.
    Ellis, A. D.
    [J]. 2007 INTERNATIONAL CONFERENCE ON INDIUM PHOSPHIDE AND RELATED MATERIALS, CONFERENCE PROCEEDINGS, 2007, : 606 - 609
  • [27] Passive optical access networks with wavelength-division multiplexing for the upstream and downstream user traffic
    Erzen, Vesna
    Batagelj, Bostjan
    [J]. ELEKTROTEHNISKI VESTNIK-ELECTROCHEMICAL REVIEW, 2016, 83 (03): : 87 - 92
  • [28] Millimeter-wave fiber-fed wireless access systems based on dense wavelength-division-multiplexing networks
    Choi, Chang-Soon
    Shoji, Yozo
    Ogawa, Hiroyo
    [J]. IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2008, 56 (01) : 232 - 241
  • [29] Capacity expansion of fiber optic infrastructure networks using wavelength division multiplexing systems
    Dutta, A
    Kubat, P
    [J]. NEXT GENERATION OPTICAL NETWORK DESIGN AND MODELLING, 2003, 114 : 395 - 404
  • [30] A novel architecture for dense wavelength-division multiplexing/subcarrier multiplexing networks
    Lin, WP
    Kao, MS
    Chi, S
    [J]. MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2002, 32 (01) : 51 - 56