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LASER INTERROGATION TECHNIQUES FOR HIGH-SENSITIVITY STRAIN SENSING BY FIBER-BRAGG-GRATING STRUCTURES

机译:光纤 - 布拉格光栅结构的高灵敏度应变感应激光询问技术

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Novel interrogation methods for static and dynamic measurements of mechanical deformations by fiber Bragg-gratings (FBGs) structures are presented. The sensor-reflected radiation gives information on suffered strain, with a sensitivity dependent on the interrogation setup. Different approaches have been carried out, based on laser-frequency modulation techniques and near-IR lasers, to measure strain in single-FBG and in resonant high-reflectivity FBG arrays. In particular, for the fiber resonator, the laser frequency is actively locked to the cavity resonances by the Pound-Drever-Hall technique, thus tracking any frequency change due to deformations. The loop error and correction signals fed back to the laser are used as strain monitor. Sensitivity limits vary between 200 nε/√Hz in the quasi-static domain (0.5÷2 Hz), and between 1 and 4 nε/√Hz in the 0.4-1 kHz range for the single-FBG scheme, while strain down to 50 pε can be detected by using the laser-cavity-locked method.
机译:提出了纤维布拉格 - 光栅(FBGS)结构的静态和动态测量机械变形的新型询问方法。传感器反射的辐射给出有关遭受的应变的信息,灵敏度取决于询问设置。已经基于激光频率调制技术和近红外激光来进行不同的方法,以测量单FBG和谐振高反射率FBG阵列中的应变。特别地,对于纤维谐振器,激光频率通过庞大珠厅技术主动地锁定到腔谐振,从而跟踪由于变形引起的任何频率变化。反馈到激光的环路误差和校正信号用作应变监视器。敏感性限制在准静电域(0.5÷2Hz)中的200nε/√Hz之间变化,在0.4-1kHz范围内,1至4 nε/√Hz,为单FBG方案,在压力下降到50可以使用激光腔锁方法检测Pε。

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