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MCRB for timing, phase and frequency estimation in presence of self-phase modulation for low-rate optical communication

机译:MCRB用于在低速光通信中存在自相位调制的情况下进行定时,相位和频率估计

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摘要

In this paper we derive the theoretical lower bound, namely Modified Cram,r-Rao bound (MCRB) for symbol timing, phase and frequency offset in presence of nonlinear self-phase modulation (SPM) in a dispersion compensated long-haul coherent fiber link. The system model considers multiple span of fiber each associated with optical amplifier. Dual polarization multilevel quadrature amplitude modulation is opted for data transmission to support the data rate lower than 10 Gigabaud. We find that SPM induces underdamped oscillation on the MCRB bounds depending on the pulse shapes (symmetric and asymmetric) utilized. In presence of realistic low-pass filter at the receiver front end, the MCRB degrades significantly due to SPM. We also show the effect of SPM on symbol error rate degradation. Simulation is carried out with symmetric return-to-zero pulse with duty cycles of 33, 67 % and self-generated asymmetric pulse to verify the theoretical results.
机译:在本文中,我们推导了理论下限,即在色散补偿长距离相干光纤链路中存在非线性自相位调制(SPM)的情况下,用于符号定时,相位和频率偏移的符号Cram,r-Rao界(MCRB) 。系统模型考虑了光纤的多个跨度,每个跨度都与光放大器相关联。选择双极化多级正交幅度调制进行数据传输,以支持低于10 Gigabaud的数据速率。我们发现,根据所使用的脉冲形状(对称和不对称),SPM会在MCRB边界上引起欠阻尼振荡。在接收器前端存在实际的低通滤波器时,由于SPM,MCRB会大大降低。我们还显示了SPM对符号错误率下降的影响。用占空比为33%,67%的对称归零脉冲和自产生的不对称脉冲进行仿真,以验证理论结果。

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