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Publication detail
MÜNSTER, P. HORVÁTH, T. VOJTĚCH, J.
Original Title
Distributed Sensing Based on Interferometry and Polarization Methods for Use in Fibre Infrastructure Protection
Type
journal article in Web of Science
Language
English
Original Abstract
Fibre optic infrastructures are very important, and therefore, it is necessary to protect them from fibre cuts. Most fibre cuts are caused by digging activity, and many network operators seek appropriate solutions enabling detection of possible unexpected events (predict these cuts) and subsequent network outages. In most cases, there is no need to locate events, and only information regarding the occurrence of the event is sufficient. Direct detection-based distributed fibre optic sensing systems appear to be an appropriate solution, allowing digging to be detected before the fibre breaks. The average power of such signals is relatively small, and there is no interference with other signals in the fibre. We performed laboratory measurements to compare the sensitivity and accuracy of interferometric and polarization systems for acoustic vibrations. In the case of interferometric systems, the reference and sensing arms were in the same cable, and both were subjected to acoustic vibrations.
Keywords
distributed sensing; digging detection; fibre infrastructure protection; interferometer; polarization
Authors
MÜNSTER, P.; HORVÁTH, T.; VOJTĚCH, J.
Released
16. 4. 2019
Publisher
MDPI
Location
Basel, Švýcarsko
ISBN
1424-8220
Periodical
SENSORS
Year of study
19
Number
8
State
Swiss Confederation
Pages from
1
Pages to
11
Pages count
URL
https://www.mdpi.com/1424-8220/19/8/1810
Full text in the Digital Library
http://hdl.handle.net/11012/180574
BibTex
@article{BUT157804, author="Petr {Münster} and Tomáš {Horváth} and Josef {Vojtěch}", title="Distributed Sensing Based on Interferometry and Polarization Methods for Use in Fibre Infrastructure Protection", journal="SENSORS", year="2019", volume="19", number="8", pages="1--11", doi="10.3390/s19081810", issn="1424-8220", url="https://www.mdpi.com/1424-8220/19/8/1810" }