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Simultaneous measurement of temperature and strain based on composite long-period fiber grating

机译:基于复合材料长型光纤光栅的温度和应变的同时测量

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Long period fiber grating is a kind of transmission type optical fiber grating. Due to the advantages such as low insertion loss, wide bandwidth, low-level reflection, high sensitivity, low cost and ease of compactness, LPFGs have been widely applied in optical fiber sensing and optical fiber communication. The Mode coupling of LPFG is the coupling between the fiber core mode and the cladding mode in the same transmission direction. If the ordinary LPFG is combined with bitaper or taper, we can effectively change the original LPFG's transmission spectrum to obtain the composite LPFG, which can stimulate new resonant peaks in the original wavelength-dependent transmission loss of the grating basis, thus applying to the dual-parameter simultaneously measuring field. We report a novel all-fiber narrow-bandwidth intermodal Mach-Zehnder interferometer (MZI) based on a long-period fiber grating (LPFG) combined with a fiber bitaper. The LPFG is written by high-frequency CO_2 laser pulses, and the bitaper is connected in series with the LPFG, forming the Mach– Zehnder interferometer (MZI). Experimental results indicate that the MZI has good temperature sensitivity, The temperature sensitivity of the two loss peaks are 55.35pm/°C and 48.18pm/°C respectively. The strain sensitivity of the two loss peaks are 3.35pm/με and -4.925pm/με respectively. By using the different temperature and strain response characteristics of the loss peaks, the temperature and strain measurement can be realized simultaneously. the proposed device has good repeatability and stability, which would be a promising candidate for precise dual-parameter sensing application.
机译:长时段光纤光栅是一种透射型光纤光栅。由于诸如较低的插入损耗,宽带宽,低电平反射,高灵敏度,低成本和易于紧凑性等优点,LPFG已广泛应用于光纤传感和光纤通信。 LPFG的模式耦合是纤维芯模式与相同传输方向之间的包层模式之间的耦合。如果普通的LPFG与BINEAPER或锥度组合,我们可以有效地改变原始LPFG的透射光谱以获得复合LPFG,这可以刺激原始波长依赖的传输损失的新的共振峰,从而施加到双重 - 参数同时测量场。我们报告了一种基于长期光纤光栅(LPFG)与纤维BINSAPER组合的新型全光纤窄带宽多显示器(MZI)。 LPFG由高频CO_2激光脉冲写入,BITEAPER与LPFG串联连接,形成MACH- Zehnder干涉仪(MZI)。实验结果表明,MZI具有良好的温度敏感性,两个损耗峰的温度敏感性分别为55.35点/°C和48.18PM /°C。两个损耗峰的应变灵敏度分别为3.35磅/με和-4.925pm /με。通过使用损耗峰的不同温度和应变响应特性,可以同时实现温度和应变测量。所提出的装置具有良好的重复性和稳定性,这将是精确的双参数感测应用的有希望的候选者。

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