Speckle characterization in multimode fibers for sensing applications
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Identificadores
URI: http://hdl.handle.net/10902/2459DOI: 10.1117/12.978217
ISSN: 1996-756X
ISSN: 0277-786X
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Rodríguez Cobo, Luis


Fecha
2012-09-11Derechos
© 2012 Society of Photo-Optical Instrumentation Engineers. One print or electronic copy may be made for personal use only. Systematic electronic or print reproduction and distribution, duplication of any material in this paper for a fee or for commercial purposes, or modification of the content of the paper are prohibited.
Publicado en
Proceedings of SPIE, 2012, vol. 8413, 84131R
V International Conference on Speckle Metrology, Vigo, 2012
Editorial
SPIE Society of Photo-Optical Instrumentation Engineers
Enlace a la publicación
Palabras clave
Multimode fiber
Speckle pattern
Characterization
Sensor application
Resumen/Abstract
This paper proposes the characterization of speckle patterns of multimode fibers in view of sensing applications and particularly for detection of vibration or seismic activity. Plastic optical fibers are used in this work due to its excellent flexibility and adaptability to build sensor heads. We are interested in the response to vibration, for which we use a short cylindrical piezoelectric transducer (PZT) vibrating in radial direction. The multimode fiber was coiled as tightly as possible around the mandrel of the PZT and periodic stretching effect was caused by the radial oscillations of the actuator. The PZT is modulated with a frequency generator by applying a sinusoidal signal in the range of 0 to 20 Hz, so the speckle patterns can be time averaged. The fiber extreme is attached to a high speed camera with a plastic adaptor, centering the speckle pattern into the CCD. Maintaining the fiber position, a region of interest is selected to capture the video sequence and it is captured to detect the variations in the speckle pattern. Once having the video sequence, it is processed by averaging the pixel differences between two consecutive frames. This processed sequence is also filtered in order to reduce the high frequency noise component. In this work we report the results of the characterization of 3 types of multimode fibers, with core diameters of 50 μm, 240 μm and 980 μm.
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