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首页> 外文期刊>Journal of Lightwave Technology >Volterra series approach for optimizing fiber-optic communications system designs
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Volterra series approach for optimizing fiber-optic communications system designs

机译:Volterra系列方法优化光纤通信系统设计

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摘要

A new methodology for designing long-haul fiber-optic communication systems is presented. We derive the overall Volterra series transfer function of the system including linear dispersion, fiber nonlinearities, amplified spontaneous emission (ASE) noise from the fiber amplifiers, and the square-law nature of the direct detection (DD) system. Since analytical expressions for the probability of error are difficult to derive for the complex systems being used, we derive analytical expressions for an upper bound on probability of error for integrate-and-threshold detection at the receiver. Using this bound as a performance criterion, we determine the optimal dispersion parameters of each fiber segment required to minimize the effects of linear dispersion, fiber nonlinearities and ASE noise from the amplifiers. We study the dependence of optimal dispersion parameters on the average power levels in the fiber by varying the peak input power levels and the amplifier gains. Analytical expressions give us the freedom to choose system parameters in a practical manner, while providing optimum system performance. Using a simple system as an example, we demonstrate the power of the Volterra series approach to design optimal optical communication systems. The analysis and the design procedure presented in this work can be extended to the design of more complex wavelength division multiplexed (WDM) systems.
机译:提出了一种设计远程光纤通信系统的新方法。我们推导了系统的整体Volterra级数传递函数,包括线性色散,光纤非线性,来自光纤放大器的放大的自发发射(ASE)噪声以及直接检测(DD)系统的平方律性质。由于对于所使用的复杂系统很难得出错误概率的解析表达式,因此我们针对接收机处的积分阈值检测推导了错误概率上限的解析表达式。使用该界限作为性能标准,我们确定了每个光纤段的最佳色散参数,以最小化放大器的线性色散,光纤非线性和ASE噪声的影响。通过改变峰值输入功率电平和放大器增益,我们研究了最佳色散参数对光纤中平均功率电平的依赖性。解析表达式使我们可以自由选择实用的系统参数,同时提供最佳的系统性能。以一个简单的系统为例,我们演示了Volterra系列方法设计最佳光学通信系统的强大功能。这项工作中介绍的分析和设计过程可以扩展到更复杂的波分复用(WDM)系统的设计。

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