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Cross polarization interference cancellation for fiber optic systems

机译:光纤系统的交叉极化干扰消除

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One method of improving the bandwidth efficiency of a fiber optic communication system is to use polarization multiplexing, where independent signals are transmitted with orthogonal polarizations. A receiver can reconstruct both signals without interference by tracking their polarizations as long as they remain orthogonal. Since orthogonality is lost to some extent during propagation through an optical fiber, a polarization tracking system will incur a signal crosstalk penalty. A new and practical method using cross polarization interference cancellation (XPIC) is proposed to correct for the loss of orthogonality incurred during propagation through an optical fiber. The system optimally reconstructs both signals at the receiver and eliminates the need for conventional polarization tracking. XPI cancellation uses fewer lasers than conventional polarization interleave multiplexing and can also mitigate effects that currently limit link performance such as chromatic and polarization mode dispersion (PMD).
机译:一种提高光纤通信系统带宽效率的方法是使用偏振复用,其中独立信号以正交偏振进行传输。只要它们保持正交,接收器就可以通过跟踪它们的极化来重建两个信号而不会产生干扰。由于在通过光纤传播期间正交性在某种程度上会丢失,因此偏振跟踪系统将招致信号串扰损失。提出了一种使用交叉极化干扰消除(XPIC)的新实用方法,以校正在通过光纤传播过程中引起的正交性损失。该系统可以在接收器上最佳地重建两个信号,并且不需要常规的极化跟踪。 XPI消除比传统的偏振交错复用使用更少的激光器,并且还可以减轻当前限制链路性能的影响,例如色度和偏振模色散(PMD)。

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