Title :
Nanoscale Resolution Interrogation Scheme for Simultaneous Static and Dynamic Fiber Bragg Grating Strain Sensing
Author :
Perry, Marcus ; Orr, Philip ; Niewczas, Pawel ; Johnston, Michael
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. of Strathclyde, Glasgow, UK
Abstract :
A combined interrogation and signal processing technique which facilitates high-speed simultaneous static and dynamic strain demodulation of multiplexed fiber Bragg grating sensors is described. The scheme integrates passive, interferometric wavelength-demodulation and fast optical switching between wavelength division multiplexer channels with signal extraction via a software lock-in amplifier and fast Fourier transform. Static and dynamic strain measurements with noise floors of 1 nε and nε/√Hz, between 5 mHz and 2 kHz were obtained. An inverse analysis applied to a cantilever beam set up was used to characterize and verify strain measurements using finite element modeling. By providing distributed measurements of both ultra-high-resolution static and dynamic strain, the proposed scheme will facilitate advanced structural health monitoring.
Keywords :
Bragg gratings; cantilevers; condition monitoring; fast Fourier transforms; fibre optic sensors; finite element analysis; optical switches; strain sensors; cantilever beam; dynamic strain measurements; fast Fourier transform; fiber Bragg grating strain sensing; finite element modeling; interferometric wavelength demodulation; multiplexed fiber Bragg grating sensors; nanoscale resolution interrogation scheme; optical switching; signal extraction; signal processing; software lock-in amplifier; static strain measurements; structural health monitoring; wavelength division multiplexer channels; Frequency measurement; Noise; Optical interferometry; Optical sensors; Optical switches; Strain; Strain measurement; Fiber Bragg gratings; interrogation; optical fiber sensors; structural health monitoring;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2012.2213891