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100 Gbps long reach coherent PON downstream transmission using dual polarization-QPSK with digital signal processing

机译:使用双极化QPSK和数字信号处理的100 Gbps长距离相干PON下行传输

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This paper demonstrates 100 Gbps long reach coherent passive optical network (CPON) downstream transmission on a single wavelength over 100 km with 1:128 power split having acceptable performance. Here dual polarization-quadrature phase shift keying modulation format is utilized for transmission in the central office and digital signal processing (DSP) is utilized at the optical network unit (ONU) to compensate the linear impairments generated due to high speed optical signal transmission over standard single mode fiber. At the receiving end (ONU), homodyne coherent detection is utilized. The DSP is done using MATLAB and executes five functions that are analog to digital conversion, chromatic dispersion compensation, polarization demultiplexing, carrier phase estimation and digital to analog conversion. The results of proposed architecture are verified in terms of constellation diagrams and receiver sensitivity. The simulated results indicate that our proposed 100 Gbps long reach CPON downstream transmission is feasible and may be implemented in next generation high speed PONs.
机译:本文演示了在100 km的单波长上100 Gbps长距离相干无源光网络(CPON)下游传输,并具有1:128的功率分配,性能令人满意。这里,双极化正交相移键控调制格式用于中心局中的传输,而数字信号处理(DSP)用于光网络单元(ONU),以补偿由于超出标准的高速光信号传输而产生的线性损伤单模光纤。在接收端(ONU),采用零差相干检测。 DSP是使用MATLAB完成的,并执行五项功能,这些功能包括模数转换,色散补偿,偏振解复用,载波相位估计和数模转换。根据星座图和接收机灵敏度验证了所提出架构的结果。仿真结果表明,我们提出的100 Gbps长距离CPON下行传输是可行的,并且可以在下一代高速PON中实现。

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