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双向抽运拉曼光纤放大器性能的研究
引用本文:忻向军,余重秀,任建华,李安俭,吴强,辛雨,王传林,郑文潇,阮双琛,杜戈果,辛港,杨晓强.双向抽运拉曼光纤放大器性能的研究[J].光学学报,2004,24(6):25-829.
作者姓名:忻向军  余重秀  任建华  李安俭  吴强  辛雨  王传林  郑文潇  阮双琛  杜戈果  辛港  杨晓强
作者单位:北京邮电大学电子工程学院,北京,100876;深圳大学工程技术学院,深圳,518060;北京瞬联软件科技有限公司,北京,100044
基金项目:国家自然科学基金 (6 0 132 0 4 0 ),广东省自然科学基金(0 11736 )资助课题
摘    要:对双向抽运拉曼光纤放大器(RFA)的噪声特性、增益饱和及抽运功率转换效率进行了详细研究。结果表明,双向抽运拉曼光纤放大器的噪声特性介于前向抽运与后向抽运之间,但主要取决于前向抽运方式所导致的噪声特性;双向抽运方式的饱和功率低于单向抽运方式的饱和功率,同前向抽运与后向抽运提供的增益比例有关;双向抽运方式的抽运功率转换效率同信号光功率及前、后向抽运提供的增益有关,当信号光功率较低时,增加前向抽运的比例可取得较高的抽运功率转换效率,而信号光功率较高时,增加后向抽运的比例可取得较高的抽运功率转换效率。研究一种配置(情况3)的双向抽运拉曼光纤放大器,可以完全补偿100km传输线路的损耗(包括无源器件的损耗),最低光信噪比为30.21dB。

关 键 词:光纤通信技术  拉曼光纤放大器  光信噪比  增益饱和  抽运功率转换效率

Performance of Bidirectionally Pumped Raman Fiber Amplifier
Xin Xiangjun Yu Chongxiu Ren Jianhua Li Anjian Wu Xiang Xin Yu Wang Chuanlin Zheng Wenxiao Ruan Shuangchen Du Geguo Xin Gang Yang Xiaoqiang Electronic Engineering School,Beijing University of Posts and Telecommunications,Beijing College of Engineering and Technology,Shenzhen University,Shenzhen Beijing Shunlian Softwave Science and Technology Co. Ltd.,Beijing.Performance of Bidirectionally Pumped Raman Fiber Amplifier[J].Acta Optica Sinica,2004,24(6):25-829.
Authors:Xin Xiangjun Yu Chongxiu Ren Jianhua Li Anjian Wu Xiang Xin Yu Wang Chuanlin Zheng Wenxiao Ruan Shuangchen Du Geguo Xin Gang Yang Xiaoqiang Electronic Engineering School  Beijing University of Posts and Telecommunications  Beijing College of Engineering and Technology  Shenzhen University  Shenzhen Beijing Shunlian Softwave Science and Technology Co Ltd  Beijing
Institution:Xin Xiangjun 1 Yu Chongxiu 1 Ren Jianhua 1 Li Anjian 1 Wu Xiang 1 Xin Yu 1 Wang Chuanlin 1 Zheng Wenxiao 1 Ruan Shuangchen 2 Du Geguo 2 Xin Gang 3 Yang Xiaoqiang 3 1 Electronic Engineering School,Beijing University of Posts and Telecommunications,Beijing 100876 2 College of Engineering and Technology,Shenzhen University,Shenzhen 518060 3 Beijing Shunlian Softwave Science and Technology Co. Ltd.,Beijing 100044
Abstract:The noise, gain saturation and pump power conversation efficiency of bidirectionally pumped Raman fiber amplifier (RFA) are investigated in detail. The results show that the noise feature of bidirectionally pumped RFA is intermediate between one of the forward and backward pumped RFA, but it is mainly determined by the noise feature of forward pumped RFA. The saturation power of bidirectionally pumped RFA is related to the ratio of gain provided by forward and backward pumping. The pump power conversion efficiency is related to signal power and the ratio of gain provided by forward and backward pumping. The pumps deployment of case 3 studied here can compensate nearly the loss of 100 km link, which includes the loss of inactive components, and the lowest optical signal-to-noise ratio (OSNR) is 30.21 dB.
Keywords:optical fiber communication technology  Raman fiber amplifier  optical signal-to-noise ratio  pump power conversion efficiency
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