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首页> 外文期刊>Applied optics >Dynamic two-axis curvature measurement using multicore fiber Bragg gratings interrogated by arrayed waveguide gratings
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Dynamic two-axis curvature measurement using multicore fiber Bragg gratings interrogated by arrayed waveguide gratings

机译:使用多芯光纤布拉格光栅进行动态两轴曲率测量,该光栅被阵列波导光栅询问

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摘要

We describe the use of arrayed waveguide gratings (AWGs) in the interrogation of fiber Bragg gratings (FBGs) for dynamic strain measurement. The ratiometric AWG output was calibrated in a static deflection experiment over a +-200 (mu)(epsilon) range. Dynamic strain measurement was demonstrated with a FBG in a conventional single-mode fiber mounted on the surface of a vibrating cantilever and on a piezoelectric actuator, giving a resolution of 0.5 (mu)(epsilon) at 2.4 kHz. We present results of this technique extended to measure the dynamic differential strain between two FBG pairs within a multicore fiber. An arbitrary cantilever oscillation of the multicore fiber was determined from curvature measurements in two orthogonal axes at 1125 Hz with a resolution of 0.05 m~(-1).
机译:我们描述了在对动态应变测量的光纤布拉格光栅(FBG)进行询问时使用阵列波导光栅(AWG)。在静态挠曲实验中,在+ -200με范围内校准了比例AWG输出。用FBG在安装在振动悬臂表面和压电致动器上的传统单模光纤中演示了动态应变测量,在2.4 kHz时分辨率为0.5με。我们提出的这项技术的结果扩展为测量多芯光纤中两个FBG对之间的动态差分应变。由两个正交轴在1125 Hz处的曲率测量结果确定多芯光纤的任意悬臂振荡,分辨率为0.05 m〜(-1)。

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