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首页> 外文期刊>Sensors Journal, IEEE >Application of Quasi-Distributed and Dynamic Length and Power Change Measurement Using Optical Frequency Domain Reflectometry
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Application of Quasi-Distributed and Dynamic Length and Power Change Measurement Using Optical Frequency Domain Reflectometry

机译:光频域反射法在准分布式动态长度和功率变化测量中的应用

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摘要

Application results of a dynamic technique for simultaneous measurement of length changes and optical power changes between multiple reflection points in an optical fiber are presented. The technique is based on incoherent optical frequency domain reflectometry (I-OFDR) and allows for measuring for example length changes and optical power changes quasi-distributed at repetition rates up to 2 kHz. Precise measurement with length change resolutions in the $mu{rm m}$-range can be conducted using standard single-mode or multi-mode fibers. Previous results of dynamic refractive index change measurement and the use of polymer optical fibers for high-strain measurement are concluded and possible sources of measurement inaccuracies are discussed. Field test results with sensors installed on a masonry building during a seismic shake test are presented. The versatility and simplicity of this technique makes it potentially interesting for application in the structural health monitoring sector and chemical process control.
机译:提出了同时测量光纤中多个反射点之间的长度变化和光功率变化的动态技术的应用结果。该技术基于非相干光频域反射仪(I-OFDR),并允许测量例如以高达2 kHz的重复速率准分布的长度变化和光功率变化。可以使用标准的单模或多模光纤以$ mu {rm m} $范围内的长度变化分辨率进行精确测量。总结了动态折射率变化测量的先前结果以及聚合物光纤在高应变测量中的使用,并讨论了测量误差的可能来源。介绍了在地震震动测试期间安装在砖石建筑上的传感器的现场测试结果。该技术的多功能性和简便性使其在结构健康监测领域和化学过程控制中的应用具有潜在的吸引力。

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