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40 Gb/s光时分复用系统中两级偏振模色散自适应补偿实验研究
引用本文:周光涛,张晓光,席丽霞,于丽,沈昱,张建忠,张娜,吴斌,苑铁成,张洪明,徐坤,杨伯君,林金桐.40 Gb/s光时分复用系统中两级偏振模色散自适应补偿实验研究[J].光学学报,2005,25(1):5-20.
作者姓名:周光涛  张晓光  席丽霞  于丽  沈昱  张建忠  张娜  吴斌  苑铁成  张洪明  徐坤  杨伯君  林金桐
作者单位:北京邮电大学光通信与光波技术教育部重点实验室,北京,100876;清华大学电子工程系,北京,100084
基金项目:国家自然科学基金(60072042),国家863计划(2001AA122041、2003AA103930)资助课题。
摘    要:偏振模色散效应严重制约着长距离高速光纤通信的发展,偏振模色散的自适应补偿成为光通信领域研究的焦点。利用两阶段偏振模色散补偿器,采用6个自由度的粒子群优化算法(PSO),通过在线监测搜索光纤链路信号的偏振度极值作为反馈控制信息,在40Gb/s归零码高速光纤传输链路中成功实现了ms量级的偏振模色散自适应补偿。补偿前后采用庞加莱球法测量光纤链路中偏振模色散量,测量结果表明在信号中心波长1560.5nm处,差分群时延补偿前后测量值分别为21ps和1.3ps,而二阶偏振模色散补偿前后测量值分别为266ps^2和43.5ps^2。补偿后实验链路中的一阶和二阶的偏振模色散同时得到不同程度的补偿,并且系统的总的功率代价在误码率为10^-9时小于1dB。

关 键 词:光纤通信技术  偏振模色散  偏振度  自适应补偿
收稿时间:2004/2/13

Two-Stage Adaptive Polarization Mode Dispersion Compensation Experiment in 40 Gb/s Optical Time DivisionMultiplexing System
Zhou Guangtao,Zhang Xiaoguang,Xi Lixia,Yu Li,Shen Yu,Zhang Jianzhong,Zhang Na,Wu Bin,Yuan Tiecheng,Zhang Hongming,Xu Kun,Yang Bojun,Lin Jintong.Two-Stage Adaptive Polarization Mode Dispersion Compensation Experiment in 40 Gb/s Optical Time DivisionMultiplexing System[J].Acta Optica Sinica,2005,25(1):5-20.
Authors:Zhou Guangtao  Zhang Xiaoguang  Xi Lixia  Yu Li  Shen Yu  Zhang Jianzhong  Zhang Na  Wu Bin  Yuan Tiecheng  Zhang Hongming  Xu Kun  Yang Bojun  Lin Jintong
Institution:Zhou Guangtao1 Zhang Xiaoguang1 Xi Lixia1 Yu Li1 Shen Yu1 Zhang Jianzhong1 Zhang Na1 Wu Bin1 Yuan Tiecheng1 Zhang Hongming2 Xu Kun1 Yang Bojun1 Lin Jintong1 1 Key Laboratory of Optical Communication and Lightwave Technologies,Ministry of Education,Beijing University of Posts and Telecommunications,Beijing 100876 2 Department of Electronic Engineering,Tsinghua University,Beijing 100084
Abstract:Polarization mode dispersion (PMD) has been the major limiting factor for long-haul high-speed optical fiber transmission and the PMD adaptive compensation is required urgently. An experiment of two-stage adaptive compensation for polarization mode dispersion in a 40 Gb/s RZ optical time-division multiplexed (OTDM) communication system is reported. The particle swarm optimization (PSO) algorithm with the six degrees of freedom (DOF) is adopted to maximize the degree of polarization (DOP) and realizes the adaptive PMD compensation. The compensation process is completed within several hundred milliseconds. The method of Poincaré sphere (PS) is applied to measure the PMD values in the experimental fiber link. The results show that the DGD decreases from 21 ps to 1.3 ps and the second PMD descends from 266 ps2 to 43.5 ps2 in central wavelength of 1560.5 nm. The first and second order PMD are compensated together in different degree and the whole system power penalty is less than 1 dB (@BER 10-9) after PMD adaptive compensation.
Keywords:optical fiber communication technology  polarization mode dispersion compensation  degree of polarization  adaptive compensation  
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