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The impact of polarization mode dispersion: optical duobinary vs. NRZ transmission

机译:偏振模色散的影响:光学双二进制与NRZ传输

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The optical duobinary data-coding is a promising technology for the implementation of ultra-dense WDM (UDWDM) systems with spectral efficiency close to the Nyquist limit. In recent experiments at 40 Gbit/s the efficiency of 0.8 bit/s/Hz has been demonstrated. Working at a bit rate as high as 40 Gbit/s the PMD could strongly impair system performance. The purpose of this work is to compare the impact of PMD on optical duobinary with respect to its impact on NRZ in a OC-768 FEC-inclusive scenario requiring an actual line-rate of 42.65 Gbit/s. We demonstrated that the impairment of PMD is larger on duobinary than on NRZ systems. However, due to its better intrinsic performance, the use of duobinary may still produce convenient results in some scenarios, like the ones analyzed.
机译:光学双二进制数据编码是用于实现频谱效率接近奈奎斯特极限的超高密度WDM(UDWDM)系统的有前途的技术。在最近的40 Gbit / s的实验中,已经证明了0.8 bit / s / Hz的效率。以高达40 Gbit / s的比特率工作可能会严重损害系统性能。这项工作的目的是比较PMD对光双二进制的影响以及在OC-768 FEC(含ECC)情况下对NRZ的影响,要求实际线速为42.65 Gbit / s。我们证明了双二进制PMD的损害大于NRZ系统。但是,由于双二进制具有更好的固有性能,因此在某些情况下(如所分析的情况),使用双二进制仍可能会产生方便的结果。

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