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Implementation of interrogation systems for fiber Bragg grating sensors

机译:光纤布拉格光栅传感器询问系统的实现

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The development of two simple methods for wavelength-optical intensity modulation techniques for fiber Bragg grating (FBG) sensors is presented. The performance is evaluated by measuring the strain and temperature. The first method consists of a narrow band source, an optical circulator, an FBG, and a power meter. The source and Bragg reflected signal from the FBG need to be matched to get linear results with good power levels. The source spectral power levels are very critical in this study. The power reflected from a matched reference FBG is fed into the measuring FBG in the second method. Since the FBGs are matched, the entire power is reflected back initially. During the measurement, the change in the measurand causes the reflected power from the sensing FBG to vary. A costly high resolution spectrum analyzer is required only during the characterization of the FBG and source. The performances of two interrogators are compared by measuring the strain and temperature. In the second method, the strain measurements can be made insensitive to the temperature variation by selecting a source with a flat spectrum at the measurement range. Highlights of these methods are the portability, cost effectiveness and better resolution.
机译:提出了两种简单的方法来开发光纤布拉格光栅(FBG)传感器的波长-光强度调制技术。通过测量应变和温度来评估性能。第一种方法由窄带光源,光环行器,FBG和功率计组成。 FBG的源和布拉格反射信号需要匹配,以得到具有良好功率水平的线性结果。源频谱功率水平在这项研究中非常关键。从匹配的参考FBG反射的功率通过第二种方法馈入测量FBG。由于FBG是匹配的,因此整个功率最初会被反射回来。在测量期间,被测物的变化会导致来自传感FBG的反射功率发生变化。仅在FBG和信号源表征期间需要昂贵的高分辨率频谱分析仪。通过测量应变和温度来比较两个询问器的性能。在第二种方法中,可以通过选择在测量范围内具有平坦光谱的光源来使应变测量对温度变化不敏感。这些方法的重点是可移植性,成本效益和更好的分辨率。

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