Multiparameter sensing with fiber Bragg gratings

C. M. Lawrence, D. Nelson, E. Udd
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引用次数: 29

Abstract

This paper describes the design of a fiber optic sensor capable of sensing temperature and three independent components of strain simultaneously in a single, short gage length device. The sensor utilizes two fiber Bragg gratings at widely spaced wavelengths (1300 nm and 1550 nm) written at a single location in polarization maintaining optical fiber. When a broad-band light source is used to illuminate the gratings, the reflected spectrum will contain four peaks corresponding to the two polarization states for each of the two gratings. If the fiber is subjected to a change in temperature or strain, the resulting change in wavelength of the reflected peaks can be used to determine the magnitude and direction of the perturbation. In theory, the four peaks can be used to simultaneously determine the grating temperature, and three independent components of strain in the fiber.
光纤布拉格光栅多参数传感
本文介绍了一种光纤传感器的设计,该传感器能够在一个单一的短规长度装置中同时检测温度和三个独立的应变分量。该传感器利用两个宽间隔波长(1300 nm和1550 nm)的光纤布拉格光栅,写入保持偏振光纤的单个位置。当使用宽带光源照射光栅时,反射光谱将包含四个峰,对应于两个光栅的两个偏振态。如果光纤受到温度或应变的变化,反射峰波长的变化可以用来确定扰动的大小和方向。理论上,这四个峰可以同时测定光栅温度,以及光纤中三个独立的应变分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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