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Rayleigh backscattering minimization in single fiber colorless WDM-PON using intensity remodulation technique

Rayleigh backscattering minimization in single fiber colorless WDM-PON using intensity remodulation technique
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摘要 The performance of colorless wavelength-division multiplexed passive optical network(WDM-PON) systems suffers from the transmission impairments mainly due to Rayleigh backscattering(RB).In this paper,we propose and demonstrate a single fiber colorless WDM-PON which enhances the tolerance to RB induced noise.The high extinction ratio in both return-to-zero(RZ)-shaped differential phase shift keying(DPSK) downstream(DS) data signal and intensity-remodulated upstream(US) data signal helps to improve the tolerance to RB induced noise.Simulation results show that downstream and upstream signals can achieve error-free performance at 10 Gbit/s with negligible penalty and improve the tolerance to RB induced noise over 25 km standard single-mode fiber.
出处 《Optoelectronics Letters》 EI 2012年第5期380-383,共4页 光电子快报(英文版)
基金 supported by the National Basic Research Program of China (No.2010CB328300) the National Natural Science Foundation of China (Nos.61077050,61077014 and 60932004) the Beijing University of Posts and Telecommunications (BUPT) Young Foundation (No.2009CZ07) the Fundamental Research Funds for the Central Universities (Nos.2011RC0307 and 2011RC0314) the Open Foundation of State Key Laboratory of Optical Communications Technologies and Networks (WRI)(No.2010-OCTN-02)
关键词 BACKSCATTERING Passive optical networks Single mode fibers WDM-PON 使用强度 瑞利后向散射 单纤维 调制技术 无色 瑞利背向散射 差分相移键控
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参考文献14

  • 1Zhensheng Jia, Jianjun Yu, Ellinas G. and Gee-Kung Chang, J. Lightwave Technol. 25, 3452 (2007).
  • 2E. Wong, Current and Next-Generation Broadband Access Technologies, Optical Fibre Communication/National Fiber Optic Engineers Conference (OFC/NFOEC), Los Angeles, 1 (2011).
  • 3M. Fujiwara, J. Kani, H. Suzuki and K. Iwatsuki, J. Lightwave Technol. 24, 740 (2006).
  • 4L. Banchi, R. Corsini, M. Presi, F. Cavaliere and E. Ciaramella, Electronics Letters 46, 1009 (2010).
  • 5Gianluca Berrettini, Gianluca Meloni, Luca Giorgi, Filippo Ponzini, Fabio Cavaliere, Pierpaolo Ghiggino, Luca Poti and Antonella Bogoni, IEEE Photonics Technology Letters 21, 453 (2009).
  • 6Shu-Chuan Lin, San-Liang Lee, Han-Hyuan Lin, Gerd Keiser and Rajeev J. Ram, J. Lightwave Technol. 29, 3727 (2011).
  • 7Arshad Chowdhury, Hung-Chang Chien, Ming-fang Huang, Jianjun Yu and Gee-Kung Chang, IEEE Photonics Technology Letters 20, 2081 (2008).
  • 8Urban P. J., Koonen A. M. J., Khoe G.D. and de Waardt H., J. Lightwave Technol. 22, 4943 (2009).
  • 9Q. Guo and A. V. Tran, Electronics Letters 47, 1333 (2011 ).
  • 10Chiuchiarelli A., Presi M., Proietti R., Contestabile G., Choudhury P., Giorgi L. and Ciaramella E., IEEE Photonics Technol. Lett. 22, 85 (2010).

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