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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Analysis of nonlinear fitting methods for distributed measurement of temperature and strain over 36 km optical fiber based on spontaneous Brillouin backscattering
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Analysis of nonlinear fitting methods for distributed measurement of temperature and strain over 36 km optical fiber based on spontaneous Brillouin backscattering

机译:基于自发布里渊反向散射的36 km光纤温度和应变分布测量的非线性拟合方法分析

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摘要

We experimentally analyzed two different nonlinear fitting methods for a Brillouin optical time domain reflectometery (BOTDR) system. By measuring the spontaneous Brillouin frequency and comparing a Lorentzian fit with a Voigt fit, we confirmed that the accuracy of the Lorentzian fit was higher than that of the Voigt fit. We also performed long-range distributed measurements using coherent detection system with a 36 km long-range optical fiber. The extinction ratio of optical pulse was improved by employing an acousto-optic modulator (AOM). As a result, we could successfully measure the Brillouin frequency shift (BFS) using a Lorentzian fit algorithm in order to calculate applied temperature and strain in the optical fiber.
机译:我们通过实验分析了布里渊光学时域反射仪(BOTDR)系统的两种不同的非线性拟合方法。通过测量自发的布里渊频率,并将洛伦兹拟合与Voigt拟合进行比较,我们确认洛伦兹拟合的精度高于Voigt拟合。我们还使用相干检测系统和36 km的远距离光纤进行了远距离分布式测量。通过使用声光调制器(AOM)提高了光脉冲的消光比。结果,我们可以使用洛伦兹拟合算法成功测量布里渊频移(BFS),以便计算光纤中的施加温度和应变。

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