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Reconstruction of phase-shifted fiber Bragg grating parameters using genetic algorithm over thermally-modulated reflection intensity spectra

机译:热调制反射强度谱上基于遗传算法的相移光纤布拉格光栅参数重构

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摘要

This paper presents a numerical method for the inverse extraction of the multiple physical parameters of phase-shifted fiber Bragg gratings (FBGs). In the proposed approach, the reflection intensity spectra produced by two known temperature distributions are taken as objective functions and a genetic algorithm is then employed to perform an iterative search for the corresponding parameters of the phase-shifted FBG, including the grating period, the grating position, the grating length, the refractive-index modulation depth, the apodize factor, and the phase-shift position. The numerical results confirm that the proposed method successfully synthesizes the parameters of phase-shifted FBGs with various structures with a high degree of accuracy. Furthermore, the method has the advantages of simplicity, low cost and a nondestructive nature. Accordingly, the method is suitable for widespread application in the fiber communications and fiber laser components fields.
机译:本文提出了一种数值方法,用于相移光纤布拉格光栅(FBG)的多个物理参数的反提取。在所提出的方法中,将由两个已知温度分布产生的反射强度光谱作为目标函数,然后采用遗传算法对相移FBG的相应参数(包括光栅周期,光栅)进行迭代搜索。位置,光栅长度,折射率调制深度,切趾系数和相移位置。数值结果表明,该方法能够成功地高精度合成各种结构的相移FBG的参数。此外,该方法具有简单,低成本和无损性质的优点。因此,该方法适用于在光纤通信和光纤激光器组件领域中的广泛应用。

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