Frontiers of Optoelectronics, Volume. 5, Issue 3, 322(2012)

Simulation and comprehensive assessment of single channel RZ-DPSK optical link by dispersion management with channel bit rate beyond 40 Gbits/s

Hamidine MAHAMADOU1, Xiuhua YUAN1、*, Eljack M. SARAH2, and Weizheng ZOU1
Author Affiliations
  • 1Wuhan National Laboratory for Optoelectronics, College of Optoelectronics Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China
  • 2Department of Electronics Engineering, College of Engineering, Sudan University of Science and Technology, Khartoum 11111, Sudan
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    This paper studied the influence of return to zero-differential phase-shift-keying (RZ-DPSK) data format on techniques of pre-, post- and pre/post combination dispersion compensation for faithful transmission of optical signal at 80 and 100 Gbits/s channel bit rate via simulation. The purpose of this study was to find out the dispersion compensation techniques for optimal transmission with the interaction effects of self-phase modulation (SPM) and amplifier spontaneous emission (ASE) for RZDPSK encoded optical data. By the simulation method, it was found out that the RZ-DPSK data format can be allowed with a transmission distance of about 700 km of standard single mode fiber (SMF) at 100 Gbits/s, and it can be provided with farther transmission distance of more than 1000 km at 80 Gbits/s with the combination of the pre- and post-compensation technique. To efficiently suppress the effect of ASE and improve optical signal-tonoise ratio (OSNR), the bandwidth frequency of optical receiver filter was found to be at least equal to bit rate.

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    Hamidine MAHAMADOU, Xiuhua YUAN, Eljack M. SARAH, Weizheng ZOU. Simulation and comprehensive assessment of single channel RZ-DPSK optical link by dispersion management with channel bit rate beyond 40 Gbits/s[J]. Frontiers of Optoelectronics, 2012, 5(3): 322

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    Paper Information

    Received: May. 17, 2012

    Accepted: Jun. 4, 2012

    Published Online: Oct. 12, 2012

    The Author Email: YUAN Xiuhua (yuanxh@mail.hust.edu.cn)

    DOI:10.1007/s12200-012-0261-2

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