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PMD compensation using a fuzzy automatic polarization controller

机译:使用模糊自动极化控制器的PMD补偿

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摘要

A new first-order polarization mode dispersion (PMD) compensation technique is experimentally demonstrated in a 2.5 Gbit/s optical transmission system. It achieves adaptive compensation over a wide range of differential group delay (DGD) values, since it does not try to compensate it, but to eliminate one of the principal states of polarization by means of a liquid crystal polarization controller and a polarizer. The PMD parameters of the received signal are measured in real time through its spectrum analysis, and used as the feedback signal in a fuzzy logic algorithm controlling the liquid crystal device. The algorithm achieves a response time faster than the PMD variations in real links, also featuring endless operation. Moreover, a deterministic compact PMD emulator has been implemented in order to test the PMD compensator system.
机译:在2.5 Gbit / s的光传输系统中,实验证明了一种新的一阶偏振模色散(PMD)补偿技术。由于它不尝试补偿微分组延迟(DGD)值,而是通过液晶偏振控制器和偏振器消除偏振的一种主要状态,因此它可以在很大范围的差分组延迟(DGD)值上实现自适应补偿。接收信号的PMD参数通过其频谱分析进行实时测量,并在控制液晶设备的模糊逻辑算法中用作反馈信号。该算法实现的响应时间比实际链路中的PMD变化更快,并且具有无限的操作性。此外,为了测试PMD补偿器系统,已经实现了确定性紧凑型PMD仿真器。

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