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Design criterion of polarization-time codes for optical fiber channels

机译:光纤通道极化时间码的设计准则

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Coherent detection with Polarization Multiplexing (PolMux) is the most promising technique for future optical fiber transmission systems. However, the optical channel suffers from non-unitary impairments known as Polarization Dependent Loss (PDL). Space-Time coding, originally designed for wireless Rayleigh fading channels, was proven to be capable of mitigating PDL. Coding gains of ST codes were evaluated through simulations and experiments that showed differences in their performance on the optical channel and on the wireless channel. In this paper, we derive an upper bound of the pairwise error probability of an optical channel considering the PDL effect. This upper bound explains the performance of ST codes used to mitigate PDL and yields the design criterion that a code should satisfy in order to completely mitigate PDL.
机译:偏振复用(PolMux)的相干检测是未来光纤传输系统中最有前途的技术。但是,光信道遭受称为偏振相关损耗(PDL)的非单一性损害。最初为无线瑞利衰落信道设计的时空编码已被证明能够缓解PDL。通过模拟和实验评估了ST码的编码增益,结果显示了它们在光信道和无线信道上的性能差异。在本文中,我们考虑了PDL效应,得出了光通道的成对错误概率的上限。此上限说明了用于缓解PDL的ST代码的性能,并得出了为了完全缓解PDL而必须满足的设计准则。

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