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Vibration-displacement measurements based on a polarimetric extrinsic fibre Fabry-Perot interferometer

机译:基于偏振非本征光纤法布里-珀罗干涉仪的振动位移测量

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A polarization-based extrinsic fibre Fabry-Perot interferometric sensor for the measurement of velocity and displacement of a vibrating target is demonstrated in this work. It operates on the principle of dual interference within a single interferometric or 'sensing' arm which, in addition, provides a sense of direction of the moving target. This has been made possible by the introduction of a retarding film positioned along the optical path between the sensing fibre end and the intended target. Two sets of interference signals are thus propagated and detected along one fibre arm to give robust and repeatable displacement-velocity information which has been found to be relatively insensitive to other external effects such as minor temperature changes. The sensor has been found to be capable of measuring the desired velocity information of an inclined target while typical excitation frequencies investigated ranged from similar to2 to 60 Hz. Experimental results from a sensor configuration employing a polarization-maintaining (PANDA type) fibre as the sensing arm and operated at 13 10 nm are presented. [References: 26]
机译:在这项工作中展示了用于测量振动目标的速度和位移的基于偏振的非本征纤维Fabry-Perot干涉传感器。它在单个干涉或“传感”臂内以双重干扰原理工作,此外,还提供了移动目标的方向感。通过引入沿传感光纤末端和目标目标之间的光路放置的延迟膜,可以实现上述目的。因此,沿着一组光纤臂传播并检测到两组干扰信号,以提供可靠且可重复的位移速度信息,该信息已发现对其他外部影响(例如较小的温度变化)相对不敏感。已经发现该传感器能够测量倾斜目标的所需速度信息,而所研究的典型激励频率范围从大约2到60 Hz。给出了使用偏振保持光纤(PANDA型)作为传感臂并在13 10 nm下工作的传感器配置的实验结果。 [参考:26]

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