梯度折射率光纤的剪接损耗:基于三参数基本模态场的Nelder-Mead非线性无约束优化的精确半解析描述

R. Choudhury, Arundhati Roy Choudhury, M. Ghose
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引用次数: 0

摘要

提出了一种具有鲁棒优化解的快速准确的梯度折射率光纤剪接损耗估计半解析公式。采用Nelder-Mead非线性无约束最小化方法对模态参数进行了半解析优化,该方法适用于不确定、有噪声甚至不连续的函数。代替通常使用的高斯函数作为渐变折射率光纤基模的试验场,采用了一种具有指数衰减和(为光纤的归一化半径)后缘的新型正弦函数。由于在基本模态解的优化中包含了三个参数,并采用了一种高效的优化技术,对各种模态参数进行了简单的解析表达式,结果比标准数值方法解更准确,计算更容易。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Splice Loss of Graded-Index Fibers: Accurate Semianalytical Descriptions Using Nelder-Mead Nonlinear Unconstrained Optimization with Three-Parameter Fundamental Modal Field
A faster and accurate semianalytical formulation with a robust optimization solution for estimating the splice loss of graded-index fibers has been proposed. The semianalytical optimization of modal parameters has been carried out by Nelder-Mead method of nonlinear unconstrained minimization suitable for functions which are uncertain, noisy, or even discontinuous. Instead of normally used Gaussian function, as the trial field for the fundamental mode of graded-index optical fiber a novel sinc function with exponentially and ( is the normalized radius of the optical fiber) decaying trailing edge has been used. Due to inclusion of three parameters in the optimization of fundamental modal solution and application of an efficient optimization technique with simple analytical expressions for various modal parameters, the results are found to be accurate and computationally easier to find than the standard numerical method solution.
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