发明公开
EP1536257A2 Optical transmission system, optical multiplexing transmission system, and related peripheral techniques 失效
OptischesÜbertragungssystem,optischesMultiplexingübertragungssystemunddazugehörigeVerfahren

  • 专利标题: Optical transmission system, optical multiplexing transmission system, and related peripheral techniques
  • 专利标题(中): OptischesÜbertragungssystem,optischesMultiplexingübertragungssystemunddazugehörigeVerfahren
  • 申请号: EP05003243.2
    申请日: 1995-08-02
  • 公开(公告)号: EP1536257A2
    公开(公告)日: 2005-06-01
  • 发明人: Ishikawa, GeorgeNishimoto, HiroshiOoi, HirokiSekiya, MotoyoshiTomofuji, Hiroaki
  • 申请人: FUJITSU LIMITED
  • 申请人地址: 1015, Kamikodanaka, Nakahara-ku Kawasaki-shi, Kanagawa 211 JP
  • 专利权人: FUJITSU LIMITED
  • 当前专利权人: FUJITSU LIMITED
  • 当前专利权人地址: 1015, Kamikodanaka, Nakahara-ku Kawasaki-shi, Kanagawa 211 JP
  • 代理机构: HOFFMANN - EITLE
  • 优先权: JP18101394 19940802; JP5929595 19950317; JP18192995 19950718
  • 主分类号: G02B6/293
  • IPC分类号: G02B6/293
Optical transmission system, optical multiplexing transmission system, and related peripheral techniques
摘要:
The invention provides a technique for optimizing transmission conditions to achieve large-capacity transmission, and also provides peripheral techniques for the practical implementation of optical multiplexing that makes large-capacity transmission possible. A transmission characteristic is measured in a transmission characteristic measuring section (53), and control of signal light wavelength in a tunable light source (44), control of the amount of prechirping, control of the amount of dispersion compensation, and/or control of optical power are performed to achieve the best transmission characteristic. Wavelength dispersion is deliberately introduced by a dispersion compensator, to reduce nonlinear effects. A tunable laser is used to optimize signal light wavelength for each optical amplification repeater section. Peripheral techniques, such as drift compensation, clock extraction, optical signal channel identification, clock phase stabilization, etc., are provided for the implementation of optical multiplexing.
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