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FBG-based dynamic strain sensors demodulated by self-mixing interferometry: Improving strain measurement resolution

机译:通过自混合干涉测量法解调的基于FBG的动态应变传感器:提高应变测量分辨率

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A fiber optic strain sensor has been devised based on the use of optical feedback or self-mixing interference within the cavity of a single-longitudinal-mode laser as a novel fiber Bragg grating interrogation scheme for strain measurement in the domain of structural health monitoring. The entire sensor device thus simply consists of a laser diode with an integrated photodiode coupled to a fiber Bragg grating under strain. The feasibility of demodulating the induced small wavelength shifts of fiber Bragg gratings under dynamic mechanical loading by self-mixing interferometry has been experimentally verified with strain gauges. This current investigation further reports new work to improve the accuracy of the measured strains. Measurement resolution, defined by the distance between two consecutive peaks from the optical fringes, has been improved from 10 muepsiv to 6 muepsiv by increasing the fiber gauge length.
机译:已经基于在单纵模激光器的腔内使用光反馈或自混合干涉来设计光纤应变传感器,作为在结构健康监测领域中用于应变测量的新型光纤布拉格光栅询问方案。因此,整个传感器设备仅由一个激光二极管和一个集成光电二极管组成,该光电二极管在应变作用下耦合到光纤布拉格光栅。通过应变仪,通过自混合干涉测量法在动态机械载荷下解调光纤布拉格光栅引起的小波长偏移的可行性已通过实验验证。当前的调查进一步报告了提高测得的应变准确性的新工作。通过增加光纤规格的长度,将测量分辨率定义为从10 muepsiv提高到6 muepsiv,该分辨率由距光学条纹的两个连续峰之间的距离定义。

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