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利用有限元法(FEM)对光纤散斑图传感器进行数值建模。

Numerical modeling of fiber specklegram sensors by using finite element method (FEM).

作者信息

Arístizabal V H, Vélez F J, Rueda E, Gómez N D, Gómez J A

出版信息

Opt Express. 2016 Nov 28;24(24):27225-27238. doi: 10.1364/OE.24.027225.

Abstract

Although experimental advances in the implementation and characterization of fiber speckle sensor have been reported, a suitable model to interpret the speckle-pattern variation under perturbation is desirable but very challenging to be developed due to the various factors influencing the speckle pattern. In this work, a new methodology based on the finite element method (FEM) for modeling and optimizing fiber specklegram sensors (FSSs) is proposed. The numerical method allows computational visualization and quantification, in near field, of changes of a step multi-mode fiber (SMMF) specklegram, due to the application of a uniformly distributed force line (UDFL). In turn, the local modifications of the fiber speckle produce changes in the optical power captured by a step single-mode fiber (SSMF) located just at the output end of the SMMF, causing a filtering effect that explains the operation of the FSSs. For each external force, the stress distribution and the propagations modes supported by the SMMF are calculated numerically by means of FEM. Then, those modes are vectorially superposed to reconstruct each perturbed fiber specklegram. Finally, the performance of the sensing mechanism is evaluated for different radius of the filtering SSMF and force-gauges, what evidences design criteria for these kinds of measuring systems. Results are in agreement with those theoretical and experimental ones previously reported.

摘要

尽管已有关于光纤散斑传感器的实现和特性表征方面的实验进展报道,但由于影响散斑图案的因素众多,开发一种合适的模型来解释扰动下散斑图案的变化虽然很有必要,但极具挑战性。在这项工作中,提出了一种基于有限元法(FEM)的用于对光纤散斑图传感器(FSSs)进行建模和优化的新方法。该数值方法能够在近场中对阶跃多模光纤(SMMF)散斑图因施加均匀分布力线(UDFL)而产生的变化进行计算可视化和量化。反过来,光纤散斑的局部变化会导致位于SMMF输出端的阶跃单模光纤(SSMF)所捕获的光功率发生变化,从而产生一种滤波效应,这解释了FSSs的工作原理。对于每个外力,通过有限元法数值计算SMMF所支持的应力分布和传播模式。然后,将这些模式进行矢量叠加以重建每个受扰动的光纤散斑图。最后,针对滤波SSMF的不同半径和力传感器评估传感机制的性能,这为这类测量系统提供了设计标准依据。结果与先前报道的理论和实验结果一致。

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