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面向单纤100Tbit/s容量的光传输技术 被引量:3

100 Tbit/s Optical Transmission Technology on Single Mode Fiber
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摘要 随着信息社会对通信需求的急剧增长,运营商对骨干网传输容量进行扩展的需求日益迫切。首先对单纤100 Tbit/s容量的光传输技术的背景进行了简单介绍;接着对近年来国内外超大容量单模单纤光传输实验进行了比较;之后详细分析了实现单纤100 Tbit/s容量光传输系统的技术路线,并重点介绍了在国内首次实现的C/L波段100.2 Tbit/s超大容量双偏振DFT-S 128QAM OFDM信号传输80 km G.652光纤的系统实验;最后,对面向单纤100 Tbit/s容量的光传输技术的研究前景进行了展望。 With the rapid development of the information society, the demand for the transmission capacity of the backbone network is becoming more and more urgent. Firstly, the background of 100 Tbit/s optical transmission technology on single mode fiber (SMF) was introduced. Then some large capacity optical transmission experiments on SMF in recent years were compared. Next, the technical mute of 100 Tbit/s optical transmission system on SMF was analyzed, and it was focused on the system experiment of C and L band 100.2 Tbit/s dual polarization DFF-S 12gQAM OFDM signal transmission over 80 km G.652 fiber which was first in China. Finally, research foreground of 100 Thit/s optical transmission technology on SMF was prospected.
出处 《电信科学》 北大核心 2015年第10期49-56,共8页 Telecommunications Science
基金 湖北省重大科技创新计划基金资助项目(No.2014AAA001) 国家自然科学基金青年科学基金资助项目(No.61307083) 国家重点基础研究发展计划("973"计划)基金资助项目(No.2010CB328300)~~
关键词 单纤100 Tbit/s光传输系统 相干光OFDM 大有效面积光纤 Raman光放大器 100 Tbit/s optical transmission system on single mode fiber, coherent optical OFDM, large effective area optical fiber, Raman optical amplifier
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参考文献16

  • 1Winzer P J.Modulation and multiplexing in optical communication systems.IEEE LEOS Newsletter,2009,23(1):4-10.
  • 2Huang M F,Qian D Y,Ip E.50.53-Gbit/s PDM-1024QAM-OFDM transmission using pilot-based phase noise mitigation.Proceedings of Opto Electronics and Communications Conference(OECC),Torino,Italy,2011:752-753.
  • 3Raybon G.8×320-Gbit/s transmission over 5 600 km using all-ETDM 80-Gbaud polarization multiplexed QPSK transmitter and coherentreceiver.Proceedings of OFC/NFOEC 2012,Los Angeles,USA,2012.
  • 4Zhou X.64-Tbit/s(640×107-Gbit/s)PDM-36QAM transmission over 320 km using both pre-and post-transmission digital equalization.Proceedings of Optical Fiber Communication,Collocated National Fiber Optic Engineers Conference,San Diego,CA,USA,2010.
  • 5Sano A,Masuda H,Kobayashi T,et al.69.1-Tbit/s(432×171 -Gbit/s)C-and extended L-band transmission over 240 km using PDM-16-QAM modulation and digital coherent detection.Proceedings of OFC/NFOEC2010,Anaheim,California,CA,USA,2010.
  • 6Qian D.High capacity/spectral efficiency 101.7-Tbit/s WDM transmission using PDM-128QAM-OFDM over 165-km SSMF within C-and L-bands.Journal of Lightwave Technology,2012,30 (10):1540-1548.
  • 7Sano1 A,Kobayashi T,Yamanaka S,et al.102.3-Tbit/s(224×548 -Gbit/s)C-and extended L-band all-Raman transmission over240 km using PDM-64QAM single carrier FDM with digital pilot tone.Proceedings of OFC/NFOEC2012,Los Angeles,CA,USA,2012.
  • 8Okamoto S,Toyoda K,Omiya T,et al.512 QAM(54 Gbit/s)coherent optical transmission over 150 km with an optical bandwidth of4 .1 GHz.Proceedings of EOEC 2010,Torino,Italy,2010.
  • 9贺志学,罗鸣,李超,杨奇,杨铸,余少华.30.7 Tbit/s相干光PDM 16QAM OFDM 80 km SSMF传输[J].光通信研究,2012(6):1-3. 被引量:9
  • 10Yang Q,Xiao X,Li C,et al.168×103 Gbit/s 25-GHz-spaced C-band transmission over 2 240 km SSMF with improved nonlinearity using DFT-S OFDM-8PSK modulation.Proceedings of Asia Communications and Photonics Conference,Guangzhou,China,2012:7-10.

二级参考文献11

  • 1Chraplyvy A R. The coming capacity crunch [A]. ECOC 2009 [C]. Vienna, Austria:VDE,2009.1-1.
  • 2Kobayashi T, Sano A, Yamada E, et al. Electro - opti - cally subcarrier multiplexed 110 Gb/s OFDM signal transmission over 80 km SMF without dispersion compensation [J]. Electron Lett, 2008, 44 (3) :225- 226.
  • 3Shieh W. High spectral efficiency coherent optical OFDM for 1 Tb/s Ethernet transport [A]. OFC 2009 [C]. San Diego, USA: IEEE, 2009. OWW1.
  • 4ChandrasekharS , Liu X. Transmission of a I . 2 Tb / s 24-carrier No-Guad-Interval Coherent OFDM Super- channel over 7200-km of Ultra-Large-Area Fiber [A]. ECOC 2009 [C]. Vienna, Austria.. VDE,2009. PD2.6.
  • 5Zhou X, Nelson L. 8 X 450-Gb/s, 50-GHz-spaced, PDM-32QAM transmission over 400 km and one 50 GHz-grid ROADM [A]. OFC 2011 [C]. Los an-geles,California, USA: IEEE, 2011. PDPB3.
  • 6Yang Q, He Zhixue. 1-Tb/s Large Girth LDPC-Coded Coherent Optical OFDM Transmission over 1040-km Standard Single-Mode Fiber [A]. OFC 2011 [C]. Los angeles, California, USA: IEEE, 2011. JThA35.
  • 7Sano A, Masuda H, Kobayashi T, et al. 69.1-Tb/s (432× 171-Gb/s) C- and Extended L-Band Transmis- sion over 240 km Using PDM-16-QAM Modulation and Digital Coherent Detection rA3. OFC 2010 [C]. San Diego, California, USA:OSA, 2010. PDPBT.
  • 8Shen Gangxiang, You Shanhong, Yang Qi, et al. Ex- perimental Demonstration of CO-OFDM Optical Net- work with Heterogeneous ROADM Nodes and Varia- ble Channel Bit-Rates [J]. Communications Letters, 2011, 8(15) :890-892.
  • 9Liu X, Chandrasekhar S. 448-Gb/s Reduced-Guard- Interval CO-OFDM Transmission Over 2000 km of Ultra-Large-Area Fiber and Five 80-GHz-Grid ROA- DMs [J]. J Lightwave Technol, 2011, 29(4): 483- 490.
  • 10Liu X , Chandrasekhar S. Generation and FEC - Deco - ding of a 231.5-Gb/s PDM-OFDM Signal with 256-It- erative-Polar-Modualtion Achieving 11.15-b/s/Hz In- trachannel Spectral Efficiency and 800-km Reach [A]. OFC 2012 [C]. Los angeles,California,USA: IEEE,2012. PDPSB. 3.

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