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Estimation of frequency offset prior to adaptive equalization for improved performance of DP-QPSK DWDM system

机译:在改进DP-QPSK DWDM系统的改进性能之前估计频率偏移

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摘要

The processing of the signal in a digital coherent receiver helps to compensate for different linear and non-linear fiber impairments. In existing digital coherent receivers, adaptive equalization (AE), a slow varying phase correction process is employed prior to frequency offset estimation (FOE), which is a fast varying phase correction process. In this work, it is proposed that the fast varying correction process should be applied first because FOE can also partially remove the phase errors thereby facilitating the AE to perform better. The proposed technique is evaluated through exhaustive simulations for an eight-channel differentially encoded dual-polarization quadrature phase-shift keying (DP-QPSK) DWDM system with channel spacing of 50 GHz and spectral efficiency (SE) of 2.24 b/s/Hz. The results confirm that the proposed technique can enhance the capability of AE thereby improving the performance of the system in terms of BER. The proposed technique exhibits a characteristic under which the considered system performs with minimum BER over a wide range of launch power, which can further be traded to increase the transmission distance. The proposed technique also exhibits a lesser dependence on laser linewidth of the local oscillator (LO), to allow the use of less expensive laser sources. The proposed technique is also helpful in mitigating the effects of in-band crosstalk due to optical switches.
机译:数字相干接收器中的信号的处理有助于补偿不同的线性和非线性光纤损伤。在现有的数字相干接收机中,自适应均衡(AE),在频率偏移估计(FOE)之前采用缓慢变化的相位校正处理,这是一个快速变化的相位校正处理。在这项工作中,建议首先应用快速变化的校正过程,因为敌人也可以部分地去除相位误差,从而便于AE更好地执行。通过用于八通道差分编码的双偏振正交相移键控(DP-QPSK)DWDM系统的详尽模拟来评估所提出的技术,其具有50GHz的信道间距和2.24b / s / Hz的光谱效率(SE)。结果证实,所提出的技术可以提高AE的能力,从而提高了系统的性能。所提出的技术表现出一个特征,所以考虑的系统在广泛的发射功率上执行最小的BER,可以进一步交易以增加传输距离。所提出的技术还表现出对本地振荡器(LO)的激光线宽的较小依赖性,以允许使用更便宜的激光源。所提出的技术也有助于减轻由于光开关引起的带状串扰的影响。

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