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Novel technique for distributed fibre sensing based on coherent Rayleigh scattering measurements of birefringence

机译:基于双折射相干瑞利散射测量的分布式光纤传感新技术

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A novel distributed fibre sensing technique is described and experimentally validated, based on birefringence measurements using coherent Rayleigh scattering. It natively provides distributed measurements of temperature and strain with more than an order of magnitude higher sensitivity than Brillouin sensing, and requiring access to a single fibre-end. Unlike the traditional Rayleigh-based coherent optical time-domain reflectometry, this new method provides absolute measurements of the measurand and may lead to a robust discrimination between temperature and strain in combination with another technique. Since birefringence is purposely induced in the fibre by design, large degrees of freedom are offered to optimize and scale the sensitivity to a given quantity. The technique has been validated in 2 radically different types of birefringent fibres - elliptical-core and Panda polarization-maintaining fibres - with a good repeatability.
机译:基于使用相干瑞利散射的双折射测量,描述了一种新颖的分布式光纤传感技术,并进行了实验验证。它固有地提供温度和应变的分布式测量,其灵敏度比布里渊传感高出一个数量级,并且需要访问单个光纤端。与传统的基于Rayleigh的相干光学时域反射仪不同,该新方法可提供被测物的绝对测量值,并结合另一种技术可导致对温度和应变的鲁棒区分。由于设计故意在光纤中引入了双折射,因此提供了很大的自由度,可以将灵敏度优化并缩放到给定的数量。该技术已在两种根本不同类型的双折射光纤(椭圆形纤芯和熊猫偏振保持光纤)中得到验证,并具有良好的重复性。

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