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首页> 外文期刊>Journal of Lightwave Technology >Optimization of the split-step Fourier method in modeling optical-fiber communications systems
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Optimization of the split-step Fourier method in modeling optical-fiber communications systems

机译:光纤通信系统建模中分步傅里叶方法的优化

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摘要

We studied the efficiency of different implementations of the split-step Fourier method for solving the nonlinear Schro/spl uml/dinger equation that employ different step-size selection criteria. We compared the performance of the different implementations for a variety of pulse formats and systems, including higher order solitons, collisions of soliton pulses, a single-channel periodically stationary dispersion-managed soliton system, and chirped return to zero systems with single and multiple channels. We introduce a globally third-order accurate split-step scheme, in which a bound on the local error is used to select the step size. In many cases, this method is the most efficient when compared with commonly used step-size selection criteria, and it is robust for a wide range of systems providing a system-independent rule for choosing the step sizes. We find that a step-size selection method based on limiting the nonlinear phase rotation of each step is not efficient for many optical-fiber transmission systems, although it works well for solitons. We also tested a method that uses a logarithmic step-size distribution to bound the amount of spurious four-wave mixing. This method is as efficient as other second-order schemes in the single-channel dispersion-managed soliton system, while it is not efficient in other cases including multichannel simulations. We find that in most cases, the simple approach in which the step size is held constant is the least efficient of all the methods. Finally, we implemented a method in which the step size is inversely proportional to the largest group velocity difference between channels. This scheme performs best in multichannel optical communications systems for the values of accuracy typically required in most transmission simulations.
机译:我们研究了采用分步傅里叶方法求解非线性Schro / spl uml / dinger方程的不同实现方式的效率,这些非线性方程采用了不同的步长选择标准。我们比较了各种脉冲格式和系统的不同实现方式的性能,包括高阶孤子,孤子脉冲的碰撞,单通道周期性固定分散管理的孤子系统以及单通道和多通道的channels归零系统。我们引入了全局三阶准确的分步方案,其中使用局部误差的界线来选择步长。在许多情况下,与常用的步长选择标准相比,该方法是最有效的,并且对于提供选择步长的独立于系统的规则的广泛系统,它是可靠的。我们发现,基于步长大小选择方法的限制每个步骤的非线性相位旋转,对于许多光纤传输系统来说虽然有效,但对孤子却效果不佳。我们还测试了一种使用对数步长分布限制虚假四波混频量的方法。该方法与单通道色散管理孤子系统中的其他二阶方案一样有效,而在包括多通道仿真在内的其他情况下则效率不高。我们发现,在大多数情况下,将步长保持恒定的简单方法是所有方法中效率最低的。最后,我们实现了一种方法,其中步长与通道之间的最大组速度差成反比。对于大多数传输模拟中通常需要的精度值,此方案在多通道光通信系统中表现最佳。

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