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Simultaneous optical signal-to-noise ratio and differential group delay monitoring based on degree of polarization measurements in optical communications systems

机译:基于光通信系统中偏振测量程度的同时光信噪比和差分群时延监控

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摘要

We present a simultaneous optical signal-to-noise ratio (OSNR) and differential group delay (DGD) monitoring method based on degree of polarization (DOP) measurements in optical communications systems. For the first time in the literature (to our best knowledge), the proposed scheme is demonstrated to be able to independently and simultaneously extract OSNR and DGD values from the DOP measurements. This is possible because the OSNR is related to maximum DOP, while DGD is related to the ratio between the maximum and minimum values of DOP. We experimentally measured OSNR and DGD in the ranges from 10 to 30 dB and 0 to 90 ps for a 10 Gb/s non-return-to-zero signal. A theoretical analysis of DOP accuracy needed to measure low values of DGD and high OSNRs is carried out, showing that current polarimeter technology is capable of yielding an OSNR measurement within 1 dB accuracy, for OSNR values up to 34 dB, while DGD error is limited to 1.5percent for DGD values above 10 ps. For the first time to our knowledge, the technique was demonstrated to accurately measure first-order polarization mode dispersion (PMD) in the presence of a high value of second-order PMD (as high as 2071 ps~(2)).
机译:我们提出了一种基于光通信系统中偏振度(DOP)测量的同步光信噪比(OSNR)和差分群时延(DGD)监视方法。在文献中(据我们所知)这是首次证明所提出的方案能够独立且同时从DOP测量中提取OSNR和DGD值。这是可能的,因为OSNR与最大DOP有关,而DGD与DOP的最大值和最小值之比有关。对于10 Gb / s不归零信号,我们通过实验测量了OSNR和DGD的范围为10至30 dB和0至90 ps。对测量DGD的低值和高OSNR所需的DOP精度进行了理论分析,表明当前的旋光仪技术能够在1 dB的精度内进行OSNR测量,对于高达34 dB的OSNR值,而DGD误差是有限的对于高于10 ps的DGD值,降低到1.5%。据我们所知,该技术首次被证明可以在高二阶PMD(高达2071 ps〜(2))的情况下精确测量一阶偏振模色散(PMD)。

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