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首页> 外文期刊>Applied optics >Design and performance investigation of a highly accurate apodized fiber Bragg grating-based strain sensor in single and quasi-distributed systems
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Design and performance investigation of a highly accurate apodized fiber Bragg grating-based strain sensor in single and quasi-distributed systems

机译:单和准分布式系统中高精度切趾光纤布拉格光栅应变传感器的设计和性能研究

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摘要

In this work, fiber Bragg grating (FBG) strain sensors in single and quasi-distributed systems are investigated, seeking high-accuracy measurement. Since FBG-based strain sensors of small lengths are preferred in medical applications, and that causes the full width at half-maximum (FWHM) to be larger, a new apodization profile is introduced for the first time, to the best of our knowledge, with a remarkable FWHM at small sensor lengths compared to the Gaussian and Nuttall profiles, in addition to a higher mainlobe slope at these lengths. A careful selection of apodization profiles with detailed investigation is performed-using sidelobe analysis and the FWHM, which are primary judgment factors especially in a quasi-distributed configuration. A comparison between the elite selection of apodization profiles (extracted from related literature) and the proposed new profile is carried out covering the reflectivity peak, FWHM, and sidelobe analysis. The optimization process concludes that the proposed new profile with a chosen small length (L) of 10 mm and Delta n(ac) of 1.4 x 10(-4) is the optimum choice for single stage and quasi-distributed strain-sensor networks, even better than the Gaussian profile at small sensor lengths. The proposed profile achieves the smallest FWHM of 15 GHz (suitable for UDWDM), and the highest mainlobe slope of 130 dBm. For the quasi-distributed scenario, a noteworthy high isolation of 6.953 dB is achieved while applying a high strain value of 1500 mu strain (mu epsilon) for a five-stage strain-sensing network. Further investigation was undertaken, proving that consistency in choosing the apodization profile in the quasi-distributed network is mandatory. A test was made of the inclusion of a uniform apodized sensor among other apodized sensors with the proposed profile in an FBG strain-sensor network. (C) 2015 Optical Society of America
机译:在这项工作中,对单一和准分布式系统中的光纤布拉格光栅(FBG)应变传感器进行了研究,以寻求高精度的测量。由于基于FBG的小长度应变传感器在医疗应用中是首选,并且会导致半最大全宽(FWHM)变大,据我们所知,这是首次引入新的切趾曲线,与高斯和Nuttall轮廓相比,在较小的传感器长度下具有显着的FWHM,此外在这些长度处的主瓣斜率更高。使用旁瓣分析和FWHM进行仔细选择的切趾分布图,并进行详细研究,这是主要的判断因素,尤其是在准分布式配置中。比较了切趾分布图的精英选择(从相关文献中提取)与拟议的新分布图之间的比较,包括反射率峰值,FWHM和旁瓣分析。优化过程得出的结论是,建议的新轮廓(选定的小长度(L)为10 mm,Δn(ac)为1.4 x 10(-4))是单级和准分布应变传感器网络的最佳选择,在较小的传感器长度下,甚至比高斯曲线更好。拟议的配置文件可实现15 GHz的最小FWHM(适用于UDWDM)和130 dB / nm的最高主瓣斜率。对于准分布式方案,在为五级应变传感网络应用1500 mu应变(mu epsilon)的高应变值的同时,实现了6.953 dB的显着高隔离。进行了进一步的调查,证明在准分布式网络中选择切趾曲线的一致性是强制性的。测试了在FBG应变传感器网络中,在建议的轮廓下,在其他切趾传感器中包括统一的切趾传感器。 (C)2015年美国眼镜学会

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