期刊文献+

不同调制方式混传对光纤通信系统性能的影响 被引量:4

Influence of mixed modulations on the performance of optical fiber communication system
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摘要 为研究相位整形不归零(PSNRZ)调制和差分正交相移键控(DQPSK)调制在与二进制幅移键控(OOK)调制混合传输时系统性能的变化情况,在分析不同信道间交叉相位调制(XPM)影响因素的基础上,通过仿真对10 Gb/s OOK-RZ码分别与40 Gb/s PSNRZ码及DQPSK-RZ码混合传输时的系统性能进行了研究。结果表明,与两种码型单独传输相比,混合传输时的系统性能都明显恶化,而DQPSK系统性能恶化尤为严重,最大传输距离减小高达500 km。 In order to study the change of system performance of PSNRZ and DQPSK modulations when transmitting together with OOK modulation,the performance of systems that mixing 10 Gb/s OOK-RZ code respectively with 40 Gb/s PSNRZ code and DQPSK-RZ code is simulated based on the analysis of influence factors of XPM among different channels.The result shows:compared with the case that the two codes transmit independently,the performance of the mixing system deteriorates obviously,especially the DQPSK system.In this case,the transmission distance decreases by more than 500 km.
出处 《激光与红外》 CAS CSCD 北大核心 2012年第4期436-439,共4页 Laser & Infrared
关键词 相位整形不归零码 差分正交相移键控 混传 传输距离 PSNRZ code DQPSK mixed transmission transmission distance
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参考文献9

  • 1Klaus M,Shaw J K. Influence of pulse shape and frequency chirp on stability ofoptical solitons[J].Optics Communications,2001,(4-6):491-500.
  • 2R A Griffin,A C Carger. Optical differential quadrature phase-shift key(oDQPSK) for high capacity optical transmission[A].2002.367-368.
  • 3陈琦玮,邵钟浩.啁啾归零码在光纤中传输性能的仿真研究[J].计算机仿真,2009,26(12):111-114. 被引量:2
  • 4李俊红,汪仲清.初始啁啾对孤子传输特性影响的数值研究[J].激光与红外,2006,36(3):193-195. 被引量:12
  • 5Llya Lyubomirsky,Chengchung Chien,Yihsiang Wang. Optical DQPSK receiver with enhanced dispersion tolerance[J].IEEE Photonics Technology Letters,2008,(07):511-513.
  • 6Xin Chen,Bingkun Zhou,Hanyi Zhang. Improvement of dispersion tolerance using phase.modulated NRZ signals in 40 Gb/s transmission systems[J].IEEE Photonics Technology Letters,2006,(01):37-39.
  • 7王润轩.初始啁啾补偿光纤色散效应的数值研究[J].激光技术,2005,29(1):109-112. 被引量:4
  • 8Carsten Behrens,Robert I Killey,Seb J Savory. Nonlinear distortion in transmission of higher order modulation formats[J].IEEE Photonics Technology Letters,2010,(15):1111-1113.
  • 9G P Agrawal;贾东方.非线性光纤光学原理及应用[M]北京:电子工业出版社,2010.

二级参考文献25

  • 1代红英,汪仲清,李俊红.色散位移光纤中Kerr系数的随机扰动对光孤子传输的影响[J].激光杂志,2004,25(6):44-46. 被引量:3
  • 2徐文成,廖常俊,郭旗,刘颂豪.色散缓变光纤对皮秒光孤子的压缩效应[J].光子学报,1994,23(4):327-334. 被引量:13
  • 3HASEGAWA A. Soliton-based optical communications: anoverview [J]. Selected Topics in Quantun Electron ,2000,6 (6) :1161 ~ 1171.
  • 4AGRAWAL G P. Effect of intrapulse stimulated Raman scattering on soliton-effect pulse compression in optical fibers [ J]. Opt Lett, 1990,15(4) :224 ~226.
  • 5MARCUSE D, MENVUK C R. Simulation of single-channel optical systems at 100 Gbit/s [J]. J Lightwave Technol, 1999,17 (4):565 ~ 567.
  • 6MURAKAMI M, IMAI M T. Long-haui 16 × 10Gbit/s WDM transmission experiment using higher order fiber dispersion management technique [ J ]. IEEE Photon Technol Lett, 1999,11 (7) :898 ~ 900.
  • 7Taylor J R.Optical soliton-theory and experiment[ M ].London:Cambridge University Press,1992.
  • 8Agrawal G P.Nonlinear fiber optics & applications of Nonlinear fiber optics[M] (中译本).Beijing:Publishing house of electronics industry,2002,12.
  • 9Anderson D,LISAK M.Bandwidth limits due to mutual pulse interaction in optical soliton communication system[J].Opt.Lett.,1986,11 (3):174-176.
  • 10Kodama Y,Nozaki K.Soliton interaction in optical fibers[J].Opt.Lett.,1987,12(12):1038-1040.

共引文献14

同被引文献37

  • 1周波,张汉一,郑小平,陈锐.微波光子学发展动态[J].激光与红外,2006,36(2):81-84. 被引量:18
  • 2闵小平,陆达,洪鸿榕.基于现场可编程门阵列的高速光纤通信的实现[J].厦门大学学报(自然科学版),2007,46(4):491-495. 被引量:15
  • 3王景国,朱少林,欧阳立强,朱道伟.新型大动态超宽频带微波光纤通信系统[J].光通信技术,2007,31(8):38-40. 被引量:2
  • 4G Heliotis,LP.Chochliouros,G Agapiou. Fibre optic net-works:the case of the FUTON programme[J].The Journal of The Institute of Telecommunications Professionals,2008,(03):113-118.
  • 5Chowdhury A,Chuang K,Hunk Chang Chien. Field demonstration of bi-directional millimeter wave RoF sys-tems inter-operable with 60 GHz multi-gigabit CMOS trans-ceivers for in-building HD video and data delivery[A].2011.1-3.
  • 6HSU R C J,AYAZI A,HOUSHMAND B. All-dielec-tric photonic-assisted radio front-end technology[J].Na-ture Photonics,2007.535-538.
  • 7Ayazi A,Hsu R C J,Houshmand B. All-dielectric photonic-assisted wireless receiver[J].{H}Optics Express,2008,(03):1742-1747.
  • 8Nguyen L V T,Hunter D B. A photonic technique for mi-crowave frequency measurement[J].{H}IEEE Photonics Technology Letters,2006,(1 0):1188-1190.
  • 9Mohmoud Mohamed,Xiupu Zhang,Salah Kuwairi. Optical multiple millimeter-wave signal generation using frequen-cy quadrupling for radio-over-fiber systems[J].{H}SPIE,2012,(84120U):1-7.
  • 10Kim H J,Song J I. All-optical single sideband upconver- sion with an optical interleaver and a semiconductor opti- cal amplifier for radio-over-fiber applications[ J]. Opt. Ex- press. ,2009,17 (12) :9810 - 9817.

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