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首页> 外文期刊>Journal of Lightwave Technology >Jitter and Amplitude Noise Accumulations in Cascaded All-Optical Regenerators
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Jitter and Amplitude Noise Accumulations in Cascaded All-Optical Regenerators

机译:级联全光再生器中的抖动和幅度噪声累积

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This paper proposes and demonstrates a simulation model to systematically investigate jitter accumulations in cascaded all-optical 2R regenerators. The simulation results indicate that when the pattern dependence from the memory effect is minimized, the jitter accumulation depends critically on the degree of the regenerative nonlinearity. Studies of tradeoffs between the jitter from bandwidth limitation and the signal-to-noise-ratio degradation help identify the optimized regenerator bandwidth for various degrees of regenerative nonlinearity. The simulation then considers the pattern dependence from the memory effect and finds that it can severely degrade the cascadability of an optical 2R regenerator and can make it worse than that of a linear optical amplifier (optical 1R). The simulation results show good matches to the experimental results of an optical 2R regenerator based on a semiconductor optical amplifier based Mach–Zehnder interferometer. To overcome the jitter accumulation associated with the optical 2R regeneration, we experimentally demonstrate an optical 3R regenerator for optical nonreturn-to-zero signals with all-optical clock recovery. The experiments achieve more than 1000-hop cascadability for pseudorandom binary sequence 2$^{31}-$ 1 inputs with a 100-km recirculation loop using lab fiber. Field trial experiments then demonstrate a more than 1000-hop cascadability for a 3R spacing of 66 km and a 100-hop cascadability for a 3R spacing of 264 km.
机译:本文提出并演示了一个仿真模型,用于系统地研究级联全光2R再生器中的抖动累积。仿真结果表明,当最小化来自记忆效应的模式依赖性时,抖动累积严重取决于再生非线性的程度。对带宽限制引起的抖动与信噪比下降之间的权衡取舍的研究有助于为各种程度的再生非线性确定最佳的再生器带宽。然后,仿真从存储效应考虑了模式相关性,发现它会严重降低光学2R再生器的级联性,并且使其比线性光学放大器(光学1R)的级联性更差。仿真结果表明,基于基于半导体光放大器的Mach–Zehnder干涉仪的光学2R再生器的实验结果非常匹配。为了克服与光学2R再生相关的抖动累积,我们通过实验证明了光学3R再生器用于全光时钟恢复的光学不归零信号。对于使用实验室光纤的100公里循环回路,伪随机二进制序列2 $ ^ {31}-$ 1输入实现了超过1000跳的级联性。然后,现场试验实验表明,对于3 km间隔66 km,可实现1000跳以上的级联;对于3 km 264 km间隔,可进行100级以上的级联。

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