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Optic fiber sensor-based smart bridge cable with functionality of self-sensing

机译:具有自感应功能的基于光纤传感器的智能桥电缆

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摘要

Bridge cables, characterized by distributed large span, serving in harsh environment and vulnerability to random damage, are the key load-sustaining components of cable-based bridges. To ensure the safety of the bridge structure, it is critical to monitor the loading conditions of these cables under lengthwise random damages. Aiming at obtaining accurate monitoring at the critical points as well as the general information of the cable force distributed along the entire cable, this paper presents a study on cable force monitoring by combining optical fiber Bragg grating (FBG) sensors and Brillouin optical time domain analysis/reflectory (BOTDA/R) sensing technique in one single optical fiber. A smart FRP-OF-FBG rebar based cable was fabricated by protruding a FRP packaged OF-FBG sensor into the bridge cable. And its sensing characteristics, stability under high stress state temperature self-compensation as well as BOTDA/R distributed data improvement by local FBG sensors have been investigated. The results show that FRP-OF-FBG rebar in the smart cable can deform consistantly along with the steel wire and the cable force obtained from the optical fiber sensors agree well with theoretical value with relative error less than + 5%. Besides, the temperature self-compensation method provides a significant cost-effective technique for the FRP-OF-FBG based cables' in situ cable force measurement. And furthermore, potential damages of the bridge cable, e.g. wire breaking and corrosion, can be characterized and symbolized by the discontinuity and fluctuation of the distributed BOTDA data thereafter accuracy improved by local FBG sensors.
机译:跨距大,在恶劣环境中工作且易受随机损坏的影响的桥缆是基于电缆的桥的关键负载保持组件。为了确保桥结构的安全,至关重要的是在纵向随机损坏下监视这些电缆的负载情况。为了获得关键点的精确监控以及整个电缆上分布的电缆力的一般信息,本文结合光纤布拉格光栅(FBG)传感器和布里渊光学时域分析,对电缆力监控进行了研究。单根光纤中的/ reflectory(BOTDA / R)传感技术。通过将FRP封装的OF-FBG传感器伸入桥接电缆中,可以制造出基于FRP-OF-FBG钢筋的智能电缆。并研究了其传感特性,在高应力状态下的温度自补偿下的稳定性以及通过局部FBG传感器改善的BOTDA / R分布式数据。结果表明,智能电缆中的FRP-OF-FBG钢筋可以随钢丝均匀变形,光纤传感器获得的电缆力与理论值吻合良好,相对误差小于5%。此外,温度自补偿方法为基于FRP-OF-FBG的电缆现场电缆力测量提供了一种重要的成本有效技术。此外,可能会损坏桥式电缆。断线和腐蚀可以通过分布式BOTDA数据的不连续性和波动来表征和表示,然后通过本地FBG传感器提高精度。

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