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Carrier phase estimation methods in coherent transmission systems influenced by equalization enhanced phase noise

机译:受均衡增强相位噪声影响的相干传输系统中的载波相位估计方法

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摘要

We present a comparative study on three carrier phase estimation algorithms, including a one-tap normalized least mean square (NLMS) method, a block-average method, and a Viterbi–Viterbi method in the n-level phase shift keying coherent transmission systems considering the equalization enhanced phase noise (EEPN). In these carrier phase estimation methods, the theoretical bit-error-rate floors based on traditional leading-order Taylor expansion are compared to the practical simulation results, and the tolerable total effective linewidths (involving the transmitter, the local oscillator lasers and the EEPN) for a fixed bit-error-rate floor are evaluated with different block sizes, when the fiber nonlinearities are neglected. The complexity of the three carrier phase estimation methods is also discussed. We find that the carrier phase estimation methods in practical systems should be analyzed based on the simulation results rather than the traditional theoretical predictions, when large EEPN is involved. The one-tap NLMS method can always show an acceptable behavior, while the step size is complicated to optimize. The block-average method is efficient to implement, but it behaves unsatisfactorily when using a large block size. The Viterbi–Viterbi method can show a small improvement compared to the block-average method, while it requires more computational complexity.
机译:我们对三种载波相位估计算法进行了比较研究,包括考虑到n级相移键控相干传输系统的一阶归一化最小均方(NLMS)方法,块平均方法和Viterbi–Viterbi方法均衡增强相位噪声(EEPN)。在这些载波相位估计方法中,将基于传统前导泰勒展开的理论误码率下限与实际仿真结果进行了比较,并得出了可容许的总有效线宽(涉及发射器,本地振荡器激光器和EEPN)当忽略了光纤的非线性时,使用不同的块大小评估固定误码率基底的误码率。还讨论了三种载波相位估计方法的复杂性。我们发现,当涉及到较大的EEPN时,应基于仿真结果而不是传统的理论预测来分析实际系统中的载波相位估计方法。一键式NLMS方法始终可以显示出可接受的行为,而步长的优化则非常复杂。块平均方法实现起来很有效,但是当使用大块大小时,它的性能不能令人满意。与块平均方法相比,维特比–维特比方法显示出较小的改进,但它需要更多的计算复杂性。

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