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利用聚合物光纤中的等离子体现象实现力传感器。

Exploiting Plasmonic Phenomena in Polymer Optical Fibers to Realize a Force Sensor.

作者信息

Arcadio Francesco, Zeni Luigi, Cennamo Nunzio

机构信息

Department of Engineering, University of Campania Luigi Vanvitelli, Via Roma 29, 81031 Aversa, Italy.

出版信息

Sensors (Basel). 2022 Mar 20;22(6):2391. doi: 10.3390/s22062391.

Abstract

In this work, a novel sensing approach to realize a force optical fiber sensor is designed, developed, and experimentally tested. The proposed sensing methodology exploits the effects of deformation due to an applied force on a patch of plastic optical fiber (POF) connected at the input of a surface plasmon resonance (SPR) sensor realized in a D-shaped POF. Therefore, the proposed force sensor system consists of an SPR D-shaped POF sensor, connected to a spectrometer, within input of a POF patch, connected to a light source used for interacting with the applied force. When the applied force on the patch changes, the mode profile of the light in the multimode POF patch and the SPR-POF sensor change too, so the SPR spectra shift. The obtained experimental results demonstrate that the proposed sensor has a resolution of the force sensor equal to about 22 mN and an excellent linear response in the range from 0 N to 0.5 N.

摘要

在这项工作中,设计、开发并通过实验测试了一种实现力光纤传感器的新型传感方法。所提出的传感方法利用了施加在连接到以D形塑料光纤(POF)实现的表面等离子体共振(SPR)传感器输入端的一片塑料光纤(POF)上的力所引起的变形效应。因此,所提出的力传感器系统由一个连接到光谱仪的SPR D形POF传感器组成,该传感器位于连接到用于与施加力相互作用的光源的POF贴片输入端内。当贴片上的施加力发生变化时,多模POF贴片和SPR - POF传感器中的光模式分布也会改变,从而导致SPR光谱发生偏移。所获得的实验结果表明,所提出的传感器的力传感器分辨率约为22 mN,并且在0 N至0.5 N的范围内具有出色的线性响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/033e/8955495/a27c520c946f/sensors-22-02391-g001a.jpg

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