Multicore fiber sensors for strain measurement towards traffic monitoring

A. Sanchez-Gonzalez, Javier Pradas, Íñigo Corera, M. Bravo, D. Leandro, R. Dauliat, R. Jamier, P. Roy, R. Pérez-Herrera, M. López-Amo
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Abstract

In this work, two new interferometric sensors based on multicore optical fibers for the measurement of strain with the ultimate goal of traffic monitoring are presented. The operating principle of each sensor relied on the monitoring of the phase shift difference accumulated between the supermodes of the structure of the multicore segment in a full round trip. The strain characterization for both sensors resulted in a linear response, with sensitivities of -4.073·10-3 rad/με and - 4.389·10-3 rad/με for the aligned and V-shaped cases respectively, and one-hour instabilities below 4.6·10-3 rad with a 95% confidence level. These results suggest its feasibility in applications requiring high sensitivities over very wide strain ranges, such as heavy-vehicle traffic monitoring. To corroborate the hypothesis, both sensors were integrated into the pavement and their response to the traffic was analyzed.
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用于应变测量的多芯光纤传感器用于交通监控
本文提出了两种基于多芯光纤的应变测量干涉传感器,其最终目的是实现交通监控。每个传感器的工作原理依赖于监测多芯段结构的超模态之间在整个往返过程中积累的相移差。两种传感器的应变特征均为线性响应,对列和v形样品的灵敏度分别为-4.073·10-3 rad/με和- 4.389·10-3 rad/με, 1小时不稳定性低于4.6·10-3 rad,置信水平为95%。这些结果表明,该方法适用于需要在很宽应变范围内具有高灵敏度的应用,如重型车辆交通监测。为了证实这一假设,这两个传感器都被集成到路面上,并分析了它们对交通的响应。
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