期刊文献+

High-speed polarization mode dispersion compensation in a 43-Gb/s RZ-DQPSK transmission system over 1200 km of standard single-mode fibre 被引量:3

High-speed polarization mode dispersion compensation in a 43-Gb/s RZ-DQPSK transmission system over 1200 km of standard single-mode fibre
下载PDF
导出
摘要 This paper reports that the designed optical polarization mode dispersion compensator shows a good performance under the real-time variation of differential group delay, state of polarization and principal state of polarization in a (40×43)-Gb/s dense-wavelength-multiplexing, 1200-km enhanced return-to-zero differential-quadrature-phase-shift- keying (RZ-DQPSK) system. The polarization mode dispersion tolerance of the system is improved by 26 ps using the optical polarization mode dispersion compensator. The short and long time stabilities are tested with the bit error ratio recorded. This paper reports that the designed optical polarization mode dispersion compensator shows a good performance under the real-time variation of differential group delay, state of polarization and principal state of polarization in a (40×43)-Gb/s dense-wavelength-multiplexing, 1200-km enhanced return-to-zero differential-quadrature-phase-shift- keying (RZ-DQPSK) system. The polarization mode dispersion tolerance of the system is improved by 26 ps using the optical polarization mode dispersion compensator. The short and long time stabilities are tested with the bit error ratio recorded.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第8期143-149,共7页 中国物理B(英文版)
基金 Project supported by the Huawei Technology Project (Grant No.YBON2008014) the National "863" High Technology Projects (Grant No.2009AA01Z224)
关键词 optical polarization mode dispersion compensator polarization mode dispersion toler-ance bit error ratio forward error correction optical polarization mode dispersion compensator, polarization mode dispersion toler-ance, bit error ratio, forward error correction
  • 相关文献

参考文献21

  • 1Noe R, Koch B, Mirvoda V and Sandel D 2010 Conference on Optical Fibre Communications (OFC) paper OThJ1, San Diego, USA.
  • 2Schmidt B, Lowery A J and Armstrong J 2009 J. Lightw. Technol. Lett. 27 2792.
  • 3Xie C J, Liu X and Bulow H 2008 IEEE Photon. Technol. Lett. 20 440.
  • 4Tang X F, Zhang X G , Xi L X, Zhang G Y, Xiong Q J and Li X X 2010 IEEE/OSA Conference on Optical Fibre Communications (OFC) paper JWA25, San Diego, USA.
  • 5Safari M and Shishegar A A 2008 J. Lightw. Technol. Lett. 26 2865.
  • 6Xie C, Werner D, Haunstein H and Chandrasekhar S 2008 IEEE/OSA Conference on Optical Fibre Communications (OFC) paper OThU3, San Diego, USA.
  • 7Xie C, Chandrasekhar S, Liu X, Werner D and Haunstein H 2008 European Conference on Optical Communication (ECOC) paper We.3.E.5, Brussels, Belgium.
  • 8Zhang X G, Yu L, Zheng Y, Shen Y, Zhou G T, Chen L, Xi L X, Yuan T C, Zhang J Z and Yang B J 2004 Opt. Commun. 231 233.
  • 9Zhang X G, Zheng Y, Shen Y and Yang B J 2005 IEEE Photon. Technol. Lett. 17 85.
  • 10Tian F, Xi L X, Zhang X G, Weng X, Zhang G Y and Xiong Q J 2010 Chin. Opt. Lett. 8 815.

同被引文献13

引证文献3

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部