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基于EDFA和级联RFA的混合光纤放大器的设计 被引量:3

Design of Hybrid Optical Fiber Amplifier Based on EDFA and Cascading RFA
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摘要 基于EDFA的理论模型和受激拉曼散射效应的分析理论,利用EDFA和RFA的增益谱互补特性,对拉曼光纤放大器(RFA)采用两根光纤级联方式,研究并设计了EDFA与级联光纤的RFA相结合的混合放大器结构。仿真结果表明:在不使用增益均衡器的条件下,所设计的混合光纤放大器在输出端得到了近似相等的输出光功率,得到了增益平坦度为0.62dB、波长带宽为70nm(1 550~1 620nm)的结果,在密集波分复用光通信系统中有重要的应用价值。 Based on the theoretical model of EDFA and the analysis theory of the stimulated Raman scattering effecting,making use of the complementary characteristics of the gain spectrum of EDFA and RFA,the hybrid amplifier structure combining EDFA and RFA was studied and designed with two fibers cascading RFA.The simulation results show that the hybrid fiber amplifier can obtain the approximate equal output signal power without gain equalizer.The gain flatness and the wavelength bandwidth are 0.62 dB and 70nm(1 550~1 620nm),respectively.It has important application value for the dense wavelength division multiplexing optical communication system.
出处 《半导体光电》 北大核心 2017年第3期321-324,348,共5页 Semiconductor Optoelectronics
基金 西安邮电大学研究生创新基金项目(CXL2015-21)
关键词 级联光纤 混合放大器 掺铒光纤放大器 拉曼光纤放大器 cascading fiber hybrid amplifier EDFA RFA
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  • 1王晖,魏敦楷,蒋凤仙.混合拉曼光纤放大器的实现[J].半导体光电,2006,27(2):143-147. 被引量:4
  • 2王衍勇 李世忱 隋展 等.宽带与超带宽光纤放大器的研究与展望.激光与光电子学进展,41(3):21-28.
  • 3云庆夏.遗传算法和遗传规则一一种搜索寻优技术[M].北京:冶金工业出版社.
  • 4Chinn S. Analysis of counter-pumped small-signal fiber Raman amplifiers[J]. Electron Lett, 1997,33(7): 607-608.
  • 5Yhu Y P, Jiang Xi. A novel fast model 01"erbium doped fiber amplifiers[J].Semiconductor Photqn.and Technol, 2000,6(1): 1-7.
  • 6Hansen P B, Eskldsen L, Grubb S G, et al. Capacity upgradespf Wansssion systems by Raman amplification [J]. IEEE Photonics Technology Lett, 1997,9(2): 262-264.
  • 7Aoki Y. Properties of fiber Raman amplifiers and their appiicability to digital optical communication systems[J]. Journal of Lightwave Tech, 1988,6(7): 1225-1239.
  • 8Namiki S, Emori Y. Ultrabroad-band Raman amplifiers pumped and gain-equalized by wavelength-division- multiplexed high-power laser diodes[J]. Journal of Selected Topics in Quantum Electronics,2001, 7 (1) : 3-16.
  • 9Morita I, Tanaka K, Edagawa N. Benefit of Raman amplification in ultra-long-distance 40Gbit/s-based WDM transmission[C]. Technical Digest Series of Optical Fiber Communication Conference. Anaheim,California:OSA,2001.
  • 10Ishida K, Abe J, Suzuki N, et al. 1.28 Tbit/s (64 X 20Gbit/s) transmission over 4200kin with 100km repeater spacing consisting of Raman/EDFA hybrid amplifiers [C].Technical Digest Series of European Conference on Optical Communication. Amsterdam, IEEE communications society, 2001.

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