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Reseach Article

Analysis of a Special Period Sampled Bragg Grating (PSBG) Structure Combined with the Large Chirp Parameter

by Anurag Kumar Yadav, A.K. Jaiswal, Neelesh Agrawal
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 128 - Number 18
Year of Publication: 2015
Authors: Anurag Kumar Yadav, A.K. Jaiswal, Neelesh Agrawal
10.5120/ijca2015906644

Anurag Kumar Yadav, A.K. Jaiswal, Neelesh Agrawal . Analysis of a Special Period Sampled Bragg Grating (PSBG) Structure Combined with the Large Chirp Parameter. International Journal of Computer Applications. 128, 18 ( October 2015), 5-9. DOI=10.5120/ijca2015906644

@article{ 10.5120/ijca2015906644,
author = { Anurag Kumar Yadav, A.K. Jaiswal, Neelesh Agrawal },
title = { Analysis of a Special Period Sampled Bragg Grating (PSBG) Structure Combined with the Large Chirp Parameter },
journal = { International Journal of Computer Applications },
issue_date = { October 2015 },
volume = { 128 },
number = { 18 },
month = { October },
year = { 2015 },
issn = { 0975-8887 },
pages = { 5-9 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume128/number18/22971-2015906644/ },
doi = { 10.5120/ijca2015906644 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T23:22:06.356043+05:30
%A Anurag Kumar Yadav
%A A.K. Jaiswal
%A Neelesh Agrawal
%T Analysis of a Special Period Sampled Bragg Grating (PSBG) Structure Combined with the Large Chirp Parameter
%J International Journal of Computer Applications
%@ 0975-8887
%V 128
%N 18
%P 5-9
%D 2015
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Chirped fiber Bragg grating (CFBG) provides an attractive solution for low cost dispersion compensation in a fiber optic transmission system. This kind of grating can be produced with a large chirp parameter and period sampled distribution along the grating length. The present work carries out the design optimization of a chirped FBG in respect of chirp bandwidth and apodization in achieving optimum dispersion compensation in a 20Gbps optical transmission link for different modulation formats.

References
  1. Phing, H. S., Ali, J., Rahman, R. A., Tahir, B., A., (2012). "Fiber Bragg grating modeling, simulation and characteristics with different gating length," Journal of Fundamental Sciences 3, 1612-1125.
  2. Navneet Singh Aulakh, (2010) " Investigations on fiber bragg gratings for fiber optic communication systems, " , department of electronics & communication engineering thapar university.
  3. Kenneth O. Hill and Gerald Meltz, (1997)“Fiber Bragg Grating Technology Fundamentals and Overview”, Journal of Lightwave Technology, vol 15, no. 8, pp. 1263-1274.
  4. Xu M.G.; Geiger H.; Archambault, J.L.; Reekie, L.; Dakin, J.P.,(1993) "Novel interrogating system for Fiber Bragg Grating sensors using an acousto-optic tunable filter," Electronics Letters , vol.29, no.17, pp.1510-1511.
  5. Ferreira L.A.; Diatzikis E.V.; Santos J. L.; Farahi F., (1998) "Frequency-modulated multimode laser diode for Fiber Bragg Grating sensors," Lightwave Technology, Journal of , vol.16, no.9, pp.1620-1630.
  6. Murphy D.F.; Flavin D.A.; McBride, R.; Jones, J.D.C., (2002) "Spatially scanned interferometric interrogation of Fiber Bragg Grating sensors based on Hilbert transform processing," Optical Fiber Sensors Conference Technical Digest, 2002. OFS 2002, 15th , vol., no., pp. 379-382 vol.1.
  7. Teunissen, J.; Merte, R.; Peier, D., (2002) "Stability of Fiber Bragg Grating sensors for integration into high-voltage transformers for online monitoring," Optical Fiber Sensors Conference Technical Digest, 2002. OFS 2002, 15th , vol., no., pp. 541-544 vol.1.
  8. Fernandez A.F.; Brichard B.; Borgermans P.; Berghmans F.; Decreton M.; Megret P.; Blondel, M.; Delchambre, A., "Fiber Bragg Grating temperature 190 sensors for harsh nuclear environments, (2002)" Optical Fiber Sensors Conference Technical Digest, 2002. OFS 2002, 15th , vol., no., pp. 63-66 vol.1.
  9. Betz, D.; Staudigel, L.; Trutzel, M.N., "Test of a Fiber Bragg Grating sensor network for commercial aircraft structures,(2002)" Optical Fiber Sensors Conference Technical Digest, 2002. OFS 2002, 15th , vol., no., pp. 55-58 vol.1.
  10. Hua Lu; Hussain, R.; Ming Zhou; Xijia Gu, (2009) "Fiber Bragg Grating Sensors for Failure Detection of Flip Chip Ball Grid Array in Four-Point Bend Tests," Sensors Journal, IEEE , vol.9, no.4, pp.457-463.
  11. Ping Lu; Liqiu Men; Qiying Chen, (2009) "Polymer-Coated Fiber Bragg Grating Sensors for Simultaneous Monitoring of Soluble Analytes and Temperature," Sensors Journal, IEEE , vol.9, no.4, pp.340-345.
  12. M.A. Othman1, M.M. Ismail2, H.A. Sulaiman3, M.H. Misran4, M.A. Meor Said5, Y.A. Rahim6, A.N. Che Pee12, M.R. Motsidi, (2012) “An Analysis of 10 Gbits/s Optical Transmission System using Fiber Bragg Grating (FBG) ,”IOSR Journal of Engineering (IOSRJEN) ISSN: 2250-3021 Volume 2, Issue 12.
  13. E. Gemzický a, J. Müllerová (2009) Numerical analysis of reflection characteristics of cascaded non-uniform fiber Bragg gratings,” Department of Engineering Fundamentals, Faculty of Electrical Engineering, University of Žilina, Optical Sensors, Proc. of SPIE Vol. 12356, 123561R.
Index Terms

Computer Science
Information Sciences

Keywords

Fiber grating Large chirp parameter Period Sampled Distribution Dispersion compensation chirp bandwidth Grating Length apodization optimum.