DocumentCode
1521591
Title
Application of Quasi-Distributed and Dynamic Length and Power Change Measurement Using Optical Frequency Domain Reflectometry
Author
Liehr, Sascha ; Krebber, Katerina
Author_Institution
Working Group Distrib. & Polymer Opt. Fibre Sensors, BAM Fed. Inst. for Mater. Res. & Testing, Berlin, Germany
Volume
12
Issue
1
fYear
2012
Firstpage
237
Lastpage
245
Abstract
Application results of a dynamic technique for simultaneous measurement of length changes and optical power changes between multiple reflection points in an optical fiber are presented. The technique is based on incoherent optical frequency domain reflectometry (I-OFDR) and allows for measuring for example length changes and optical power changes quasi-distributed at repetition rates up to 2 kHz. Precise measurement with length change resolutions in the -range can be conducted using standard single-mode or multi-mode fibers. Previous results of dynamic refractive index change measurement and the use of polymer optical fibers for high-strain measurement are concluded and possible sources of measurement inaccuracies are discussed. Field test results with sensors installed on a masonry building during a seismic shake test are presented. The versatility and simplicity of this technique makes it potentially interesting for application in the structural health monitoring sector and chemical process control.
Keywords
condition monitoring; fibre optic sensors; length measurement; power measurement; reflectometry; strain measurement; strain sensors; chemical process control; dynamic length; dynamic refractive index change measurement; high-strain measurement; incoherent optical frequency domain reflectometry; length measurement; polymer optical fibers; power change measurement; seismic shake test; structural health monitoring sector; Frequency domain analysis; Optical fiber sensors; Optical fibers; Optical reflection; Optical variables measurement; Distributed strain sensor; dynamic measurement; optical fiber sensor; refractive index sensors; structural health monitoring;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2011.2157126
Filename
5771525
Link To Document