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Interferometer phase error and chromatic dispersion effects on the performances of 40 Gbit/s optical DPSK transmission systems

机译:干涉仪相位误差和色散对40 Gbit / S光学DPSK传输系统的性能的影响

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The performance limitations due to interferometer phase error (IPE) and Chromatic Dispersion (CD) in a 40 Gbit/s optical Differential Phase-Shift-Keying (DPSK) transmission system are investigated through simulations. Two different optical filters (Fabry-Perot filter (FP) or Fiber Bragg Grating filter (FBG)) and both return-to-zero (RZ) and non-return-to-zero (NRZ) codings were assumed to find out whether these different configurations showed better performances. By means of numerical simulations, we optimize the bandwidths of the optical and electrical receiver's filters. Then, the impact of the IPE on the Bit Error Rate (BER) performance is analyzed when the received signal is filtered by two types of optical filter. The optical power penalties caused by the IPE impact at BER of 10−9 in the presence of CD are evaluated. Simulation results show that, without CD the system suffer a significant amount of power penalties due to the IPE, and the optical filter has an influence on the power penalties, i.e. the system with FBG filter has the better performances than the one with FP filter, while NRZ-DPSK modulation format exhibit almost the same power penalty that RZ-DPSK. However, it is found that with CD, the system which uses FP filter performs better than the one which uses FBG filter, i.e. owing to the presence of CD, the better performances switch from FBG filter to FP filter, whereas RZ-DPSK modulation format is more robust to IPE than NRZ-DPSK while FP optical filter is employed. This provides the basis for a tradeoff between FP & FBG Filters and NRZ-DPSK & RZ-DPSK modulations format through a careful selection of a suitable optical filter and an appropriate modulation format.
机译:通过模拟研究了40Gbit / s光学差分相移键控(DPSK)传输系统中的干涉仪相位误差(IPE)和色散(CD)引起的性能限制。两个不同的光学滤波器(Fabry-Perot滤波器(FP)或光纤布拉格光栅滤光片(FBG))以及返回零(RZ)和非返回到零(NRZ)编码,以了解这些不同的配置表现出更好的表现。通过数值模拟,我们优化光学和电气接收器过滤器的带宽。然后,当接收信号通过两种类型的光学滤波器过滤时,分析了IPE对误码率(BER)性能的影响。评估由10 − 9 在CD存在下的IPE撞击引起的光学功率惩罚。仿真结果表明,如果没有CD,系统由于IPE而遭受大量的功率损失,并且滤光器对功率惩罚产生影响,即使用FBG滤波器的系统具有比具有FP滤波器更好的性能,虽然NRZ-DPSK调制格式几乎与RZ-DPSK的电源惩罚几乎相同。但是,发现使用CD,使用FP滤波器的系统比使用FBG滤波器的系统更好地执行,即由于CD的存在,从FBG滤波器切换到FP滤波器,而RZ-DPSK调制格式更好地表现为FP滤波器,而RZ-DPSK调制格式在采用FP光学滤波器时比IPE更强大而不是NRZ-DPSK。这通过仔细选择合适的光学滤波器和适当的调制格式,为FP&FBG滤波器和NRZ-DPSK和RZ-DPSK调制调制格式提供了基础。

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