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High-spatial-resolution distributed strain measurement in optical fiber with Rayleigh scatter

Applied Optics · 1998 · Vol. 37(10) · pp. 1735–1735
Mark E. FroggattJason P. Moore

Abstract

A method of measuring strain over 30-cm intervals to an accuracy of10 microstrain in unaltered low-loss communications-grade single-modeoptical fiber is presented. The method uses a tunable external cavity diode laser to measure the reflected intensity of a reflector-fiber system as a function of wavelength. This measurement is performed with no strain applied to the fiber to produce a reference and then again after a strain has been induced. Cross correlation of the Rayleigh scatter spectra from a selected section of fiber in the strained and unstrained states determines the spectral shift resulting from the applied strain.

Advanced Fiber Optic SensorsPhotonic and Optical DevicesSemiconductor Lasers and Optical DevicesOpticsMaterials scienceRayleigh scatteringOptical fiberGraded-index fiberFiber optic sensorDistributed acoustic sensingStrain (injury)Polarization-maintaining optical fiberFiber
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