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Tilted fiber Bragg grating design for a simultaneous measurement of temperature and strain

机译:倾斜光纤布拉格光栅设计,用于同时测量温度和菌株

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摘要

Bragg wavelength is sensitive to both temperature and strain changes. Therefore, in sensors that are designed using a fiber Bragg grating (FBG), it is not possible to discriminate the cross-sensitivity of temperature and strain. The design of tilted fiber Bragg gratings (TFBG), which is a family of short-period gratings, has been one of the solutions to this problem. The core mode resonance (LP01) and cladding resonances (LPmn) appear simultaneously in the transmission spectrum. It is possible to perform the simultaneous, independent measurement of temperature and strain using only a TFBG. In this study, the design of a TFBG sensor with a tilt angle of 5° were performed by using the Optigrat-ing 4.2.2 software in order to measure the temperature and strain simultaneously. While the varying temperature was applied to the TFBG in the first stage, the varying strain was applied to it in the second stage, and simultaneously varying temperature and strain were applied to it in the third stage, and linear shifts occurring in wavelengths were calculated using Optigrating. In the design stage of the temperature sensor, research was conducted with different thermal expansion and thermo-optic coefficients, the amounts of shifts caused by these coefficients in the wavelength were examined. It was observed that the change in the wavelength caused by the simultaneous application of temperature and strain was equal to the total change in wavelength that occurred in the non-simultaneous application of temperature and strain.
机译:布拉格波长对温度和应变变化敏感。因此,在使用光纤布拉格光栅(FBG)设计的传感器中,不可能区分温度和菌株的交叉敏感性。倾斜光纤布拉格光栅(TFBG)的设计是短期光栅的家庭,这是解决这个问题的解决方案之一。核心模式共振(LP01)和包层共振(LPMN)在传输频谱中同时出现。仅使用TFBG可以执行同时,独立的温度和应变测量。在该研究中,通过使用Optigrat-Ing 4.2.2软件进行具有5°的倾斜角度的TFBG传感器的设计,以便同时测量温度和应变。虽然在第一阶段将变化温度施加到TFBG,但在第二阶段将变化的应变施加,并且在第三阶段将其施加同时改变温度和菌株,并且使用波长发生线性偏移Optigration。在温度传感器的设计阶段,采用不同的热膨胀和热视光系数进行了研究,研究了由波长的这些系数引起的换档量。观察到,通过同时施加温度和应变引起的波长的变化等于在不同时施加温度和菌株中发生的波长的总变化。

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