一种采用光纤布拉格光栅的传感器,具有固有的机械温度补偿

T. Matsumura, K. Nakamura, S. Ueha
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引用次数: 4

摘要

在建筑和土木工程结构中,为了防止灾害或保持性能,对各部分的分布力监测的需求越来越大。为此,光纤布拉格光栅(FBG)传感器由于其简单的工作原理和通过WDM技术复制的能力而成为最有前途的候选之一。在实际应用中,应消除光纤光栅中心波长的温度特性。为此目的进行了基于光学方法的各种研究。然而,由于需要特殊的fbg或fbg数量翻倍,因此最终的系统既复杂又昂贵。本报告提出了一种称重传感器,它是一种力传感器,使用现成的FBG可以取代传统的称重传感器。该装置由一个用于通信的普通光纤光栅和一个具有非热机制的八角形框架组成。这个想法是基于安装光纤光栅的结构的机械行为,而不是光纤光栅的光学特性。本文介绍了用有限元法设计温度补偿结构,并对其载荷和温度特性进行了实验研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A load cell using an optical fiber Bragg grating with inherent mechanical temperature compensation
There is increasing demand for monitoring of distributed force loaded at various parts in architectural and civil engineering structures to prevent disasters or maintain performances. For this purpose, an optical fiber Bragg grating (FBG) sensor is one of the most promising candidates due to its simple operational principle and the capability to duplicate by WDM technology. For practical use, the temperature characteristics of the center wavelength of an FBG should be eliminated. Various studies based on optical approaches have been conducted for this purpose. However, the resulting systems are complicated and expensive because special FBGs are needed or the number of FBGs is doubled. This report proposes a load cell, which is a force sensor, using a ready-made FBG that can replace a conventional load cell. This device consists of an ordinary FBG for communication and an octagonal frame that has an athermal mechanism. The idea is based on mechanical behavior of the structure on which the FBG is installed, instead of the optical properties of the FBG. This report describes the design of the temperature compensating structure using the finite element method (FEM), as well as experimental studies of the load and temperature characteristics.
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