DSP-based high precision real-time inline PMD monitoring

X. Yuan, Yang'an Zhang, Minglun Zhang, Jinnan Zhang, Yongqing Huang
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Abstract

Polarization mode dispersion is considered to be one of the main obstacles for high speed long-haul optical fiber communication systems. It is necessary to realize PMD monitoring. This paper theoretically analyzed the principle of polarization mode dispersion monitoring with degree of polarization as monitoring signal. Using the degree of polarization method, the scheme of DSP based high precision real-time inline PMD monitoring is designed and implemented. An experiment system is set up to monitor polarization mode dispersion of 40Gbit/s DQPSK system. The experiment results show that the range of input optical power is -20~0dBm, the response time is 1μs and the states of polarization accuracy degree is 1%. It has high sensitivity and can be used in a variety of modulation formats and it is independent of optical signal rate.
基于dsp的高精度实时在线PMD监测
偏振模色散被认为是高速长途光纤通信系统的主要障碍之一。实现PMD监测是必要的。本文从理论上分析了以偏振度为监测信号的偏振模色散监测原理。采用极化度法,设计并实现了基于DSP的PMD高精度实时在线监测方案。建立了40Gbit/s DQPSK系统偏振模色散监测实验系统。实验结果表明,该激光器的输入光功率范围为-20~0dBm,响应时间为1μs,偏振态精度为1%。它具有高灵敏度,可用于多种调制格式,并且与光信号速率无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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