首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Synthesis method based on optimization techniques for designing piecewise-uniform long-period fiber gratings controlled by thermal changes
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Synthesis method based on optimization techniques for designing piecewise-uniform long-period fiber gratings controlled by thermal changes

机译:基于优化技术的热变化控制分段均匀长周期光纤光栅的合成方法

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摘要

We propose a new method for synthesizing piecewise-uniform long-period fiber gratings (LPFGs) by using an extended fundamental matrix model with thermal changes. The proposed synthesis method is then applied to the design of the LPFG tuned by the thermal changes for erbium gain equalization by using the simulated-annealing and steepest-descent optimization techniques. We describe how a piecewise-uniform LPFG can be constructed by utilizing the inverted gain spectrum of erbium-doped fiber amplifiers (EDFAs), from the thermal change parameters' search process. A sensitivity analysis also is done to study the tolerance of our approach against possible error sources. such as the temperature controller, the fabrication of the LPFG, and the EDFA spectrum, by using Monte Carlo simulations. To verify the validity of the proposed synthesis method experimentally, we manufactured the piecewise-uniform LPFG with thermal changes by using a divided coil heater. We observe that the spectrum designed by the proposed synthesis method is close to the corresponding measured spectrum in the wavelength band of interest. We also compare the performance of the proposed method with traditional approaches, such as Newton-like methods. (c) 2006 Optical Society of America
机译:我们提出了一种使用具有热变化的扩展基本矩阵模型合成分段均匀长周期光纤光栅(LPFG)的新方法。然后,通过模拟退火和最速下降优化技术,将所提出的合成方法应用于通过热变化调整的LPFG,以实现增益均衡。我们从热变化参数的搜索过程中,描述了如何利用掺do光纤放大器(EDFA)的倒置增益谱来构建分段均匀的LPFG。还进行了敏感性分析,以研究我们的方法对可能的误差源的容忍度。例如温度控制器,LPFG的制造以及EDFA频谱,这些都通过使用蒙特卡洛模拟进行。为了通过实验验证所提出的合成方法的有效性,我们使用分体式线圈加热器制造了具有热变化的分段均匀LPFG。我们观察到,通过所提出的合成方法设计的光谱接近感兴趣的波段中相应的测量光谱。我们还将比较该方法与传统方法(如牛顿式方法)的性能。 (c)2006年美国眼镜学会

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