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首页> 外文期刊>IEEE Photonics Technology Letters >Constant step-size analysis in numerical simulation for correct four-wave-mixing power evaluation in optical fiber transmission systems
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Constant step-size analysis in numerical simulation for correct four-wave-mixing power evaluation in optical fiber transmission systems

机译:在数值模拟中进行恒定步长分析,以正确评估光纤传输系统中的四波混频功率

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摘要

Accurate evaluation of four-wave-mixing (FWM) contributions is one of the most time consuming problems in numerical simulations of wavelength-division-multiplexed light-wave systems. A too large constant step size can lead to widely overestimate the output FWM power. In this letter for the first time to our knowledge, I analyze the maximum allowed constant step size to be utilized in split-step Fourier method simulations, for obtaining a given accuracy in the FWM power evaluation. A very general rule is given, valid for any possible value of fiber dispersion, channel separation, channel power and number of channels considered in the simulation.
机译:在波分复用光波系统的数值模拟中,对四波混频(FWM)贡献的准确评估是最耗时的问题之一。恒定的步长太大会导致高估输出FWM功率。在这封信中,我第一次了解到,我分析了在分步傅立叶方法仿真中使用的最大允许恒定步长,以在FWM功率评估中获得给定的精度。给出了一个非常通用的规则,该规则对于模拟中考虑的任何光纤色散,通道间隔,通道功率和通道数的可能值均有效。

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