DocumentCode
3125331
Title
Incoherent optical frequency domain reflectometry for health monitoring of avionics fiber optics networks
Author
Ryu, G. ; Dagenais, Mario
Author_Institution
ECE Dept., Univ. of Maryland, College Park, MD
fYear
2008
fDate
Sept. 30 2008-Oct. 2 2008
Firstpage
15
Lastpage
16
Abstract
We present a highly sensitive, linear and high spatial resolution approach for the detection of flaws and spurious reflections in avionic optical fiber links based on the technique of incoherent optical frequency domain reflectometry (IOFDR). This approach allows built in test functionality. In particular, we demonstrate the technique of incoherent frequency modulated continuous wave optical frequency domain reflectometry (I-FMCW-OFDR) to detect fiber faults in a 100 m avionic multimode fiber optic link operating at 850 nm. This system can ultimately be engineered to provide diagnosis to the assembly level during line maintenance and provide information useful for preventive maintenance. We demonstrate fault location with accuracy better than 2 mm. We also demonstrate an ultra-high dynamical range approach sufficient for detecting Rayleigh scattering in the multimode fiber. The proposed approach requires very little modification of existing transceivers in present avionic systems, utilizes commercially available digital synthesizer chips, and delivers record performance in terms of sensitivity, dynamic range and spatial resolution for locating the sources of reflection in long fiber optics links. The laser that was used in these measurements is a low cost multimode VCSEL.
Keywords
avionics; frequency modulation; frequency-domain analysis; optical fibre networks; patient monitoring; reflectometry; surface emitting lasers; Rayleigh scattering; avionic optical fiber links; avionics fiber optics networks; built in test functionality; fault location; fiber optics links; incoherent frequency modulated continuous wave; incoherent optical frequency domain reflectometry; multimode VCSEL; ultrahigh dynamical range approach; Aerospace electronics; Frequency domain analysis; Monitoring; Optical fiber networks; Optical fibers; Optical modulation; Optical scattering; Optical sensors; Reflectometry; Spatial resolution;
fLanguage
English
Publisher
ieee
Conference_Titel
Avionics, Fiber-Optics and Photonics Technology Conference, 2008 IEEE
Conference_Location
San Diego, CA
Print_ISBN
978-1-4244-1919-7
Electronic_ISBN
978-1-4244-1920-3
Type
conf
DOI
10.1109/AVFOP.2008.4653153
Filename
4653153
Link To Document