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首页> 外文期刊>Photonics Technology Letters, IEEE >Adaptive Boundaries Scheme for Cycle-Slip Mitigation in C-mQAM Coherent Systems
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Adaptive Boundaries Scheme for Cycle-Slip Mitigation in C-mQAM Coherent Systems

机译:C-mQAM相干系统中缓解滑移的自适应边界方案

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摘要

We propose a method for cycle-slip mitigation in circular multilevel quadrature amplitude modulation (C-mQAM) coherent optical systems, with constellation rotational asymmetry, based on an adaptive boundaries approach. The impact of cycle-slips in C-mQAM coming from Viterbi–Viterbi algorithm limits the phase noise tolerance. By introducing adaptive boundaries and a differential coding scheme, the ambiguity of asymmetrical rotation of constellation can be effectively removed. Performance of the proposed method is evaluated for a C-16QAM and C-64QAM for various laser linewidths. Results show a noticeable improvement in linewidth symbol duration product ( tolerance compared with the previous studies on C-mQAM and mQAM constellations. The tolerance reaches and for C-16QAM and C-64QAM, respectively, for 1 dB penalty at a symbol error rate of .
机译:我们提出了一种基于自适应边界方法的圆形多级正交幅度调制(C-mQAM)相干光学系统中具有星座旋转不对称性的周期滑移缓解方法。 Viterbi–Viterbi算法对C-mQAM中的周跳产生的影响限制了相位噪声容限。通过引入自适应边界和差分编码方案,可以有效地消除星座图不对称旋转的歧义。针对各种激光线宽,针对C-16QAM和C-64QAM评估了所提出方法的性能。结果表明,线宽符号持续时间乘积有了显着改善(与以前对C-mQAM和mQAM星座的研究相比,容差达到了C-16QAM和C-64QAM的容差分别为1 dB和5 dB,符号误码率为。

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