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Linear Fiber Impairments Mitigation of 40-Gbit/s Polarization-Multiplexed QPSK by Digital Processing in a Coherent Receiver

机译:通过相干接收器中的数字处理来减轻40 Gbit / s偏振复用QPSK的线性光纤损害

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摘要

To provide higher capacity networks, 40-Gb/s transmission systems are under active development and their cost is on the way to be competitive with the one of 4$,times,$10 Gb/s. However, their lower tolerance to linear and nonlinear fiber impairments remains a major drawback for field deployment. To address the issue of linear impairments, coherent detection of multilevel formats with polarization division multiplexing appears as a promising solution by reducing the symbol rate to 10 Gbaud. Indeed, such coherent based systems have already demonstrated an improved tolerance to optical noise and an interesting capability to compensate for large amount of chromatic dispersion. In this paper, the tolerances to narrow optical filtering, chromatic dispersion, and polarization mode dispersion are investigated with coherent detection of 10-Gbaud quadrature phase shift keying (QPSK) with and without polarization division multiplexing. Moreover, the efficient mitigation of these linear impairments by digital processing in a coherent receiver is demonstrated in an ultralong haul transmission (4080 km) of 40-Gb/s QPSK polarization multiplexed data.
机译:为了提供更高容量的网络,正在积极开发40 Gb / s传输系统,其成本正在与4倍10 Gb / s之一竞争。然而,它们对线性和非线性光纤损伤的较低耐受性仍然是现场部署的主要缺点。为了解决线性损伤的问题,通过将符号率降低到10 Gbaud,采用偏振分割复用技术对多级格式进行相干检测是一种很有前途的解决方案。实际上,这样的基于相干的系统已经证明了对光学噪声的改进的容忍性以及补偿大量色散的令人感兴趣的能力。在本文中,通过相干检测带有和不带有偏振分割复用的10 Gbaud正交相移键控(QPSK),研究了窄光学滤波,色散和偏振模色散的容限。此外,在40 Gb / s QPSK偏振复用数据的超长距离传输(4080 km)中,证明了在相干接收机中通过数字处理有效地缓解这些线性损伤。

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