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Analytic modeling of Four -Wave -Mixing with inter-channel walk-off in wavelength-division-multiplexed optical links.

机译:波分复用光链路中具有信道间跳动的四波混合的解析模型。

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摘要

Fiber nonlinearity can cause interactions and crosstalk between co-propagating dense wavelength division multiplexed channels in high capacity optical fiber communication systems. The crosstalk between channels leads to degradation of the bit error performance of the system. One of the mechanisms of this crosstalk is Four-Wave-Mixing (FWM) caused by the fiber nonlinearity. It is important to have an analytic model for the FWM to estimate and minimize the impact of FWM for a given transmission system design.;It is shown that for both RZ-OOK and RZ-DPSK modulation formats the walk-off effect significantly increases the FWM noise variance for all FWM types before any filtering at the end of fiber. When a multiplexer/de-multiplexer is used the walk-off effect is significant and observable for the degenerate FWM case but is no longer significant for the non-degenerate FWM case. In the typical situation when a sub-bit-rate electrical low pass filter is also used, the walk-off effect is effectively removed for all three types of FWM. Comparing the models for the two modulation formats it is found that the FWM noise standard deviation and related BER penalty are much smaller for RZ-DPSK as compared to that for RZ-OOK at the same average launch power.;Conventional analytic models for FWM ignore the inter-channel walk-off effect. In this thesis a model for FWM is developed which rigorously accounts for the walk-off effect. The model is derived for degenerate and non-degenerate FWM. This model is derived for conventional RZ-OOK and the emerging RZ-DPSK modulation formats. A detailed physical understanding of the walk-off contribution to the FWM noise is developed. The first direct comparison, between an analytic model for FWM and split-step Fourier (SSF) simulations for the general case of random modulated channels is presented, for a single span 10-Gb/s link.
机译:光纤非线性会在高容量光纤通信系统中引起共同传播的密集波分复用信道之间的相互作用和串扰。通道之间的串扰会导致系统的误码性能下降。这种串扰的机制之一是由光纤非线性引起的四波混频(FWM)。对于FWM而言,拥有一个分析模型以估计并最小化FWM对给定传输系统设计的影响非常重要;这表明对于RZ-OOK和RZ-DPSK调制格式而言,走离效应都会显着增加在光纤末端进行任何滤波之前,所有FWM类型的FWM噪声方差。当使用多路复用器/多路分解器时,对于简并的FWM情况,离散效应是显着且可观察的,但对于非简并的FWM情况,则不再显着。在典型情况下,如果还使用子位速率的电子低通滤波器,则对于所有三种类型的FWM都可以有效消除走离效应。比较两种调制格式的模型,发现与在相同平均发射功率下的RZ-OOK相比,RZ-DPSK的FWM噪声标准偏差和相关BER损失要小得多; FWM的常规分析模型被忽略通道间漫游效应。在这篇论文中,FWM模型被开发出来,它严格地解释了走动效应。该模型是针对简并FWM和非简并FWM导出的。该模型是针对常规RZ-OOK和新兴的RZ-DPSK调制格式得出的。发展了对FWM噪声的影响的详细物理理解。针对单个跨度10 Gb / s链路,针对FWM的分析模型与针对随机调制通道的一般情况的分步傅里叶(SSF)仿真之间进行了首次直接比较。

著录项

  • 作者

    Akhtar, Adnan.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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