40 Gbit/s WDM系统关键技术与应用
摘要
本文分析了40 Gbit/s WDM系统的光信噪比、色度色散、偏振模色散,非线性效应等关健技术难题及其解决方案,并对目前业内主推的40 Gbit/s系统进行了探讨。
出处
《现代传输》
2009年第2期10-13,共4页
Modern Transmission
参考文献10
-
1Jumpei Hongou,Keisuke Kasai,Masato Yoshida,Masataka Nakazawa."1 Gsymbol/s,64 QAM coherent optical transmission over 150 km with a spectral efficiency of 3 bit/s/Hz"[].OFC.
-
2D.van den Borne,S.L.Jansen,E.Gottwald,G.D.Khoe,H.de Waardt."Inter-channel Depolarization Impairments in 21.4-Gbit/s POLMUX OOK and DPSK Transmission"[].Proceedings Symposium IEEE/LEOS.2005
-
3Guo-Wei Lu,Kit Chan,Lian-Kuan Chen,Chun-Kit Chan."Robustness of DPSK-WDM Systems Against Nonlinear Polarization Fluctuation"[].IEEE PhotoTechnoLett.2004
-
4S.J.Savory,G.Gavioli,R.I,Killey,P.Bayvel."Transmission of 42. 8Gbit/s Polarization Multiplexed NRZ-QPSK over 6400km of Standard Fiber with no Optical Dispersion Compensation"[].OFC.
-
5.Efficient mitigation of fiber impairments in and ultra-long haul transmission of 40 Gbit/s polarization-multiplexed data by digital processing in a coherent receiver[].OFC.
-
6Xiaolin Li,Fan Zhang,Xiaoru Zhang,Dechao Zhang,et al."Free spectral range optimization of return-tozero differential phase-shift keyed demodulation in 40 Gbit/s nonlinear transmission"[].OpticsExpress.2008
-
7Dechao Zhang,Anshi Xu,Fan Zhang,Zhangyuan Chen."Intra-channel Nonlinearity Induced Degree of Polarization Degradation in High Speed Transmission"[].Microwave and Optical Technology Letters.2008
-
8Zhang Dechao,Li Xiaolin,Zhang Xiaoru,Wang Ziyu,Xu Anshi,Chen Zhangyuan,Li Hongbin,Li Zhengbin."43 Gbit/s DWDM Optical Transmission System Using NRZ Format and Electro-absorption Modulation"[].First International Conference on Communications and Networking.2006
-
9D,C.Zhang,X.L.Li,X.R.Zhang,J.H.Li,A.S.Xu,Z.Y.Wang,H.B.Li,Z. B.Li,F.Zhang,Z.Y.Chen."42.8 Gbit/s electro-absorption modulated NRZ transmission over 1200 km standard singlemode fibre"[].IEE ElectroLett.2007
-
10J.-C.Antona,P.Sillard."Relationship between the Achievable Distance of WDM Transmission Systems and Criterion of Quality for DCM"[].OFC.
-
1韦乐平.超高速光纤系统的市场、关键技术与发展策略[J].通信技术政策研究,2009(1):1-13.
-
2李上一.40G波分复用(WDM)技术及应用分析[J].华东电力,2010,38(3):358-362. 被引量:4
-
3李俊杰,杨玉森.40Gbit/s高速传输系统的应用思考[J].通信世界,2008(46).
-
4Francis Audet.高速传输中色度色散的影响[J].电信科学,2009,25(1):12-13.
-
5韦乐平.超高速光纤系统的关键技术与发展策略[J].现代电信科技,2009,39(9):2-7.
-
6王梅,赵婉芳,刘光,陈宝君.WDM系统保护技术浅析[J].科技资讯,2010,8(18):23-24.
-
7文韬.新时代 新精彩 构建T比特Switched 0 TN/WDM系统[J].通信世界,2008(38):74-75. 被引量:1
-
8韦乐平.40/100 Gbit/s超高速光纤系统的关键技术与发展策略[J].电信科学,2009,25(1):1-7. 被引量:2
-
9韦乐平.超高速光纤传输系统的关键技术与发展策略[J].电信工程技术与标准化,2009,22(4):1-7. 被引量:1
-
10高勇超,谢伟.光纤传输的非线性效应对WDM系统发展影响[J].系统仿真技术,2006,2(3):162-165. 被引量:3