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Analysis of an Optical Fiber Coherent System Immune to Polarization Fluctuations Using Adaptive Detection

机译:利用自适应检测对偏振波动不敏感的光纤相干系统进行分析

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摘要

The light polarization fluctuations strongly affect the performance of coherent optical communication systems due to the fact that to recover the information contained in the phase of the signal beam, it is necessary to have interference with a reference beam. In the present work, a simple system based on the use of an optical fiber interferometer and two adaptive photodetectors, which is immune to polarization fluctuations provoked by the fiber in both signal and reference beams, is theoretically analyzed. In such study, two models of the optical fiber, the first with just one linear retarder and another more complex with an additional circular retarder, were used. The results for linearly polarized light in the Y axis direction showed that digital signal transmission received by the adaptive system is immune to polarization fluctuations (in both signal and reference beams) in a wide range of ellipticity and rotation variations. In particular, if TTL logic is used, a maximum fluctuation of 60% with respect to the maximum of the output signal would be allowed to transmit the information correctly, in this case, ellipticity and rotation variations could be up to ±30°.
机译:由于要恢复信号光束相位中包含的信息,必须与参考光束发生干涉,因此光偏振波动会严重影响相干光通信系统的性能。在目前的工作中,理论上分析了一个基于使用光纤干涉仪和两个自适应光电探测器的简单系统,该系统不受信号和参考光束中光纤引起的偏振波动的影响。在这样的研​​究中,使用了两种光纤模型,第一种只有一个线性延迟器,而另一种复杂的具有附加的圆形延迟器。 Y轴方向上的线性偏振光的结果表明,自适应系统接收的数字信号传输在较大的椭圆率和旋转变化范围内不受偏振波动(在信号光束和参考光束中)的影响。特别是,如果使用TTL逻辑,则相对于输出信号最大值的最大波动为60%,这将允许正确地传输信息,在这种情况下,椭圆度和旋转变化可能高达±30°。

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