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Phase-noise-canceled differential phase-shift-keying (PNC-DPSK) for coherent optical communication systems

机译:相干光通信系统的相噪消除差分相移键控(PNC-DPSK)

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摘要

A modulation scheme using a nonlinear demodulation process, phase-noise-canceled differential phase-shift keying (PNC-DPSK), is used to circumvent the effects of phase noise in a phase-shift keying (PSK) system. A theoretical description of the system is given, and results of an experimental test system are shown to be in good agreement with the predictions. In particular, it is shown that the phase-noise-induced bit error rate (BER) floor can be eliminated despite using lasers with linewidths comparable to the data rate. Furthermore, for an optimized PNC-DPSK system, the degradation at high signal-to-noise compared to heterodyne PSK with ideal sources (i.e. no phase noise) should only be approximately=3 dB.
机译:使用非线性解调过程的调制方案,即消除了相噪的差分相移键控(PNC-DPSK),可避免相移键控(PSK)系统中的相位噪声影响。给出了系统的理论描述,并且实验测试系统的结果与预测结果非常吻合。特别地,示出了尽管使用了具有与数据率相当的线宽的激光器,但是可以消除相位噪声引起的误码率(BER)基底。此外,对于优化的PNC-DPSK系统,与具有理想信号源(即无相位噪声)的外差PSK相比,高信噪比下的衰减应仅为大约= 3 dB。

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