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Research on the demodulation techniques of long-period fiber gratings strain sensing with low cost

机译:低成本长期光纤光栅应变感应的解调技术研究

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The working principle of LPFG(Long-Period Fiber Grating) is based on coupling effect between propagating core-mode and co-propagating cladding-modes. The effective refractive index of cladding-modes could be obviously influenced by the environmental changes resulting in LPFG more sensitive than FBG (Fiber Bragg Grating) in sensing areas, such as temperature, strain, concentration, bending and etc. LPFG should have more potential in the field of sensors compared with FBG. One of the challenges in using LPFG for environmental sensing is how to interrogate the signal from the LPFG transmission spectrum, due to the large spectral range of the resonant dip. Nowadays the application of LPFG is normally limited in signal interrogation of FBG as optical edge filter. The signal interrogation of LPFG itself needs further research. Presently research on signal interrogation of fiber grating focuses on wavelength interrogation. The aim of wavelength interrogation is to get the wavelength shift caused by environmental change. To solve these problems, a kind of strain sensing interrogation technique for LPFG with low-cost based on tunable FBGs has been developed. Comparing with the method using Fabry-Perot cavity, tunable FBGs can lower the cost with the guarantee of sensing precision. The cost is further lowered without using expensive optical instruments such as optical switch. The problem of temperature cross-sensitivity was solved by using reference gratings. An experiment was performed to demonstrate the interrogation system. And in the experiment, the sensing signal of LPFG applied 0-1300με was successfully interrogated. The results of the interrogation system and OSA are similar.? (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:LPFG(长期光纤光栅)的工作原理基于传播芯模式和共传播包层模式之间的耦合效应。包层模式的有效折射率可能明显受环境变化的影响,导致LPFG比传感区域(例如温度,菌株,浓度,弯曲等)更敏感的LPFG比FBG(光纤布拉格光栅)更敏感。LPFG应该有更多的潜力与FBG相比传感器领域。使用LPFG进行环境传感的挑战之一是如何从LPFG透射光谱询问信号,由于谐振浸的大的光谱范围。如今,LPFG的应用通常在FBG的信号询问中被限制为光边滤波器。 LPFG本身的信号询问需要进一步研究。目前关于光纤光栅信号询问的研究侧重于波长询问。波长询问的目的是获得由环境变化引起的波长移位。为了解决这些问题,已经开发出一种基于可调性FBG的低成本的LPFG应变感测询问技术。与使用法布里 - 珀罗腔的方法相比,可调性FBG可以通过感测精度的保证降低成本。在不使用诸如光学开关的昂贵的光学仪器的情况下进一步降低了成本。使用参考光栅解决了温度交叉敏感性的问题。进行实验以证明询问系统。在实验中,成功地询问了0-1300με的LPFG的感测信号。询问系统和OSA的结果是相似的。 (2012)照片光学仪表工程师(SPIE)的版权协会。仅供个人使用的摘要下载。

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