Electrodynamic model of the bending fiber-optic sensor
Problemy fiziki, matematiki i tehniki, no. 1 (2013), pp. 43-47.

Voir la notice de l'article provenant de la source Math-Net.Ru

Bending radiation loss caused by elliptical deformation in the sensitive element of the fiber-optic pressure sensor was investigated on the basis of the fiber-optic loop antenna model.
Keywords: optical fiber, fiber optical sensor of pressure.
@article{PFMT_2013_1_a7,
     author = {I. V. Shilova and O. A. Belskaya and A. B. Sotsky},
     title = {Electrodynamic model of the bending fiber-optic sensor},
     journal = {Problemy fiziki, matematiki i tehniki},
     pages = {43--47},
     publisher = {mathdoc},
     number = {1},
     year = {2013},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/PFMT_2013_1_a7/}
}
TY  - JOUR
AU  - I. V. Shilova
AU  - O. A. Belskaya
AU  - A. B. Sotsky
TI  - Electrodynamic model of the bending fiber-optic sensor
JO  - Problemy fiziki, matematiki i tehniki
PY  - 2013
SP  - 43
EP  - 47
IS  - 1
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/PFMT_2013_1_a7/
LA  - ru
ID  - PFMT_2013_1_a7
ER  - 
%0 Journal Article
%A I. V. Shilova
%A O. A. Belskaya
%A A. B. Sotsky
%T Electrodynamic model of the bending fiber-optic sensor
%J Problemy fiziki, matematiki i tehniki
%D 2013
%P 43-47
%N 1
%I mathdoc
%U http://geodesic.mathdoc.fr/item/PFMT_2013_1_a7/
%G ru
%F PFMT_2013_1_a7
I. V. Shilova; O. A. Belskaya; A. B. Sotsky. Electrodynamic model of the bending fiber-optic sensor. Problemy fiziki, matematiki i tehniki, no. 1 (2013), pp. 43-47. http://geodesic.mathdoc.fr/item/PFMT_2013_1_a7/

[1] Yin Shizhuo, Paul B. Ruffin, T. S. Yu. Francis, Fiber Optic Sensors, CRC Press, Taylor Francis Group, Boca Raton–London–New York, 2008, 477 pp.

[2] T. Okosi i dr., Volokonno-opticheskie datchiki, per. s yapon., ed. T. Okosi, Energoatomizdat, Leningr. otd-e, L., 1991, 256 pp.

[3] E. Udd (red.), Volokonno-opticheskie datchiki. Vvodnyi kurs dlya inzhenerov i nauchnykh rabotnikov, per. s angl., Tekhnosfera, M., 2008, 520 pp.

[4] V. I. Busurin, Yu. R. Nosov, Volokonno-opticheskie datchiki: Fizicheskie osnovy, voprosy rascheta i primeneniya, Energoatomizdat, M., 1990, 256 pp.

[5] D. Donlagic, M. Zavrsnik, “Fiber-optic microbend sensor structure”, Opt. Lett., 22:11 (1997), 837–839

[6] J. H. Lim et al., “Tunable fiber grating fabricated in photonic crystal fiber by use of mechanical pressure”, Opt. Lett., 29:4 (2004), 331–333

[7] O. V. Ivanov, “Wavelength shift and split of cladding mode resonances in microbend long-period fiber gratings under torsion”, Opt. Commun., 232:1–6 (2004), 159–166

[8] V. I. Borisov, I. V. Shilova, “Mnogokanalnyi mikroizgibnyi volokonno-opticheskii datchik mekhanicheskogo usiliya”, Vestnik Mogilevskogo gosudarstvennogo tekhnicheskogo universiteta, 2004, no. 1, 19–21

[9] V. I. Borisov, I. V. Shilova, “Mnogokanalnyi mikroizgibnyi volokonno-opticheskii datchik temperatury”, Vestnik Mogilevskogo gosudarstvennogo tekhnicheskogo universiteta, 2004, no. 2, 21–24

[10] A. Snaider, Dzh. Lav, Teoriya opticheskikh volnovodov, Radio i svyaz, M., 1987

[11] M. D. Nielsen, N. A. Mortensen, M. Albertsen, “Predicting macrobending loss for large-mode area photonic crystal fibers”, Optics Express, 2004, no. 7, 1775–1779