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两种实现方式的改进型光双二进制性能分析 被引量:2

Performance analysis of modified optical duobinary in two different implementation methods
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摘要 文章仿真研究了两种改进型光双二进制调制格式。首先对比分析了产生两种改进型光双二进制调制格式的发射机结构及两种调制格式的码型和频谱特性,随后进行了系统的传输性能仿真。仿真结果表明:当残留色散较大时,改进Ⅱ型光双二进制调制格式性能较为优异;而在-13.2~2.8dBm入纤光功率范围内,与改进Ⅱ型光双二进制和NRZ(非归零)码调制格式相比,改进Ⅰ型光双二进制的Q值最高,抗非线性效应能力最强。 This paper studies by simulation two kinds of modulation formats for modified optical duobinary.It first compares and analyzes the structures of the transmitters that generate these formats,and their code type and spectrum characteristics.Afterwards,it simulates the system transmission performances.The results show that when the residual dispersion is large,the modified type Ⅱ optical duobinary modulation format has better performance.However,within the incident optical power range of-13.2 ~ 2.8dBm,the modified type I optical duobinary modulation format has the highest Qvalue and hence the strongest resistance to nonlinear effects compared with the modified typeⅡ optical duobinary and NRZ modulation formats.
出处 《光通信研究》 北大核心 2015年第2期7-10,共4页 Study on Optical Communications
基金 河北省科学计划项目(13220344) 石家庄科学技术研究与发展指导计划(11113451) 石家庄学院校级科研团队项目(XJTD004)
关键词 改进型光双二进制 调制格式 残留色散 非线性效应 modified optical duobinary modulation format residual dispersion nonlinear effect
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参考文献8

  • 1Haris M. Advanced modulation formats for high-bit- rate optical networks [M]. Atlanta, USA: Georgia Institute of Technology, 2008.
  • 2邵宇丰,陈林,文双春,朱江章.新型改进光双二进制传输的编解码方案[J].通信学报,2007,28(2):58-63. 被引量:11
  • 3Lee J, Jang H, Kim Y, et al. Chromatic dispersion tolerance of new duohinary transmitters Based on two intensity modulators without using electrical low-pass filters [J]. Journal of lightwave technology, 2004, 22 (10) : 2264--2269.
  • 4Kim H, Yu C X, Neilson D T. Demonstration of opti- cal duobinary transmission system using phase modu- lator and optical filter [J]. Photonics Technology Let- ters, IEEE, 2002, 14(7): 1010--1012.
  • 5Rosenkranz W. High Capacity Optical Communication Networks-Approaches for Efficient Utilization of Fiber Bandwidth [C]// First Joint Symposium on Opto-- Microeleetronic Devices and Circuits (SODC 2000). Nanjing, China: Southeast University, 2000:106 -- 107.
  • 6Kim Y, Jang H, Hur S, et al. Evaluation of Trans- mission Performance in Cost-effective Optical Duobi- nary Transmission Utilizing Single-arm MZ Modula- tors and Investigation of Effects of Driving Voltage in the MZ Modulators [J]. International Journal of Mi- crowave and Optical Technology, 2006, 1 (2) : 559-- 563.
  • 7Lu Y C, Wei C C, Chen J J, et al. Effects of filter bandwidth and driving voltage on optical duobinary transmission systems [J]. Optical Fiber Technology, 2007, 13(3): 231--235.
  • 8Miyamoto Y, Yonenaga K, Hirano A, et al. N X 40-Gbit/s DWDM Transport System Using Novel Re- turn-to-Zero Formats with Modulation Bandwidth Re- duction [J]. IEICE transactions on communications, 2002, 85(2): 374--385.

二级参考文献8

  • 1樊昌信 等.通信原理[M].国防工业出版社,1995..
  • 2CHENG K S, CONRADI J. Reduction of pulse-to-pulse interaction using alternative RZ formats in 40Gbit/s systems[J]. IEEE Photonics Technology Letters, 2002, 14(1):98-100.
  • 3YONENAGA K, MIYAMOTO Y, TOBA H, et al. 320Gbit/s WDM repeaterless transmission using fully encoded 40Gbit/s optical duobinary channels with dispersion tolerance of 380ps/nm[J]. Electron Letters, 2001, 37(2): 109-110.
  • 4周炯槃,庞沁华,续大我等.通信原理[M].北京:北京邮电大学出版社,2005.
  • 5YU J J. Generation of modified duobinary RZ signals by using one single dual-arm LiNbO3 modulator[J]. IEEE Photonics Technology Letters,2003,15(10): 1455-1457.
  • 6RAMASWAMI R, SIVRAJAN K N. Optical Networks: a Practical Perspective, Second Edilion[M]. Beijing: China Machine Press,2004.
  • 7FRANK T, HANSEN P B, NIELSEN T N, et al. Duobinary transmitter with low intersymbol interference[J]. IEEE Photonics Technology Letters,1998, 10(4):597-599.
  • 8YONENAGA K, KUWANA S. Dispersion-tolerant optical transmission system using duobinary transmitter and binary receiver[J]. J Lightwave Technol, 1997,15(8): 1530-1537.

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