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Double-clad fibre numerical optimization with a simplex method

机译:双包式光纤数值优化与单纯x方法

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A simulation-based numerical optimization method for double-clad fibres (DCFs) is presented. The technique seeks to determine the cross sectional design that offers the strongest absorption. An encoding key that transforms the twodimensional cross section into a single point in a multi-dimensional space has been developed. The coordinates of the referred point are treated as the variables of an equation-free objective function and the Nelder-Mead algorithm is deployed to search for the function minimizer which is not always found but the function is always minimized substantially. The coordinates of the minimizer or the point delivering the best performance amongst the simplex vertices is decoded to unfold the optimized cross section. During the optimization process, the evaluation of the objective function is treated as a moving boundaries problem and is addressed via an efficient numerical simulation technique operating in the geometrical optics domain. Various optimized cross section designs are generated and compared. The optimum designs are those of a spiral inner cladding with an offset core and a circular one with four embedded birefringence rods with optimized offsets. The concept of improving the multidimensional landscape instead of improving the direct search method itself increases the agility of the polytope and generates more imaginative cross sections with improved absorption characteristics.
机译:提出了一种基于模拟的双包纤维(DCF)的数值优化方法。该技术寻求确定提供最强吸收的横截面设计。已经开发了一个编码键,其已经开发了在多维空间中的单点转换为单一的单点。所提到的点的坐标被视为无公式的目标函数的变量,并且部署了Nelder-Mead算法以搜索并不总是找到的功能最小化,但是该功能总是基本上最小化。解码最小化器或在单纯形顶点之间提供最佳性能的点的坐标被解码以展开优化的横截面。在优化过程中,目标函数的评估被视为移动边界问题,并通过在几何光学域中操作的有效数值模拟技术来解决。产生各种优化的横截面设计并进行比较。最佳设计是具有偏移芯的螺旋内包层和具有具有优化偏移的四个嵌入的双折射杆的圆形芯。改善多维景观而不是改善直接搜索方法本身的概念增加了多托的敏捷性,并产生具有改善的吸收特性的更具想象力的横截面。

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