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Design of APSK Constellations for Coherent Optical Channels with Nonlinear Phase Noise

机译:具有非线性相位噪声的相干光信道的APSK星座设计

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摘要

We study the design of amplitude phase-shift keying (APSK) constellations for a coherent fiber-optical communication system where nonlinear phase noise (NLPN) is the main system impairment. APSK constellations can be regarded as a union of phase-shift keying (PSK) signal sets with different amplitude levels. A practical two-stage (TS) detection scheme is analyzed, which performs close to optimal detection for high enough input power. We optimize APSK constellations with 4, 8, and 16 points in terms of symbol error probability (SEP) under TS detection for several combinations of input power and fiber length. For 16 points, performance gains of 3.2 dB can be achieved at a SEP of 10^{-2} compared to 16-QAM by choosing an optimized APSK constellation. We also demonstrate that in the presence of severe nonlinear distortions, it may become beneficial to sacrifice a constellation point or an entire constellation ring to reduce the average SEP. Finally, we discuss the problem of selecting a good binary labeling for the found constellations.
机译:我们研究了相干光纤通信系统的振幅相移键控(APSK)星座图的设计,其中非线性相位噪声(NLPN)是主要的系统损害。 APSK星座可以视为具有不同幅度级别​​的相移键控(PSK)信号集的并集。分析了一种实用的两阶段(TS)检测方案,该方案对足够高的输入功率执行接近最佳的检测。对于输入功率和光纤长度的几种组合,我们根据TS检测下的符号错误概率(SEP),用4、8和16点优化APSK星座图。对于16个点,通过选择优化的APSK星座图,与16-QAM相比,在SEP为10 ^ {-2}时可以实现3.2 dB的性能增益。我们还证明,在存在严重的非线性失真的情况下,牺牲一个星座点或整个星座环以降低平均SEP可能会变得有益。最后,我们讨论为找到的星座选择良好的二进制标签的问题。

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