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JOURNALS || EIJO Journal of Engineering, Technology and Innovative Research (EIJO – JETIR) [ ISSN : 2455 - 9172 ]
A Review: An Analysis of Fiber Bragg Grating For Dispersion Compensation in Optical Fiber Communication System

Author Names : Srashti Kamthan  volume 1 issue 1
Article Overview

ABSTRACT 

The benefits of Fiber Bragg Gratings make them attractive to other applications as well. In telecommunications systems, they are used for dispersion compensation in fiber optic transmission systems, de-multiplexing filters for wavelength division multiplexing systems, and long-period gratings for gain flattening of erbium-doped fiber amplifiers. The primary application of Fiber Bragg Gratings is in optical communications systems[1]. They are specifically used as notch filters. They are also used in optical multiplexers and de-multiplexers with an optical circulator, or Optical Add-Drop Multiplexer (OADM).

Keywords: Fiber, Optical, OADM, FGB, Division, Multiplexing.

Reference

[1]. Foo Siang Fook, V.; Kng Poh Leong; Hao Jian Zhong, E.; Jayachandran, M.; Aung Aung Phyo Wai; Biswas, J.; Lin Wei Si; Yap, P., "Non-intrusive respiratory monitoring system using Fiber Bragg Grating sensor," e-health Networking, Applications and Services, 2008. HealthCom 2008. 10th International Conference on , vol., no., pp.160-164, 7-9 July 2008.

[2]. Canning, J.; Bandyopadhyay, S.; Stevenson, M.; Cook, K., "Fiber Bragg Grating sensor for high temperature application," Opto-Electronics and Communications Conference, 2008 and the 2008 Australian Conference on Optical Fiber Technology. OECC/ACOFT 2008. Joint conference of the , vol., no., pp.1-2, 7-10 July 2008,

[3].  Franke, R.; Hoffmann, F.; Bertram, T., "Observation of link deformations of a robotic manipulator with Fiber Bragg Grating sensors," Advanced Intelligent Mechatronics, 2008. AIM 2008. IEEE/ASME International Conference on , vol., no., pp.90-95, 2-5 July 2008

[4] .Arkwright, J.W.; Doe, S.N.; Blenman, N.G.; Underhill, I.D.; Maunder, S.A.; Lim, B.; Szczesniak, M.M.; Dinning, P.G.; Cook, I.J., "The use of wavelength division multiplexed Fiber Bragg Grating sensors for distributed sensing of pressure in the gastrointestinal tract," PhotonicsGlobal@Singapore, 2008. IPGC 2008. IEEE, vol., no., pp.1-4, 8-11 Dec. 2008.

[5]. Xinyong Dong; Tam, H.Y.; Shum, P., "Intensity-Modulated Fiber Bragg Grating Sensor System Employing Fiber Dispersion," PhotonicsGlobal@Singapore, 2008. IPGC 2008. IEEE, vol., no., pp.1-4, 8-11 Dec. 2008.

[6].  L. A. Garcia-de-la-Rosa, L. Torres Gómez and A. Martínez Ríos, “Temperature Impact on Mechanically Induced Long Period Fiber Gratings,” Optics and Lasers in Engineer, Vol. 49, No. 6, 2011, pp. 714-717. http://dx.doi.org/10.1016/j.optlaseng.2010.12.013.

[7]. H, Y, Liu, D. K. Liang and J. Zeng, “Long Period Fiber Grating Transverse Load Effect-Based Sensor for Asphalt Pavement Pressure Field Measurements,” Sensors and Actuators A: Physical, Vol. 168, No. 2, 2011, pp. 262-266. http://dx.doi.org/10.1016/j.sna.2011.04.009.

[8].  L. Y. Shao, L. Albane and S. Mateusz, “Highly Sensitive Bend Sensor with Hybrid long-period and Titled Fiber Bragg Grating,” Optics Communications, Vol. 283, No. 13, 2010, pp. 2690-2694. http://dx.doi.org/10.1016/j.optcom.2010.03.013.

[9].  X. L. Jiang and Z. T. Gu, “Parameters Optimization ofπ Phase-Shifted Long Period Fiber Grating for Gas Sensing,” Optoelectronics Letter, Vol. 7, No. 1, 2011, pp. 22-25. http://dx.doi.org/10.1007/s11801-011-0058-3.

[10].  He, Y.J. Novel D-type LSPR fiber sensor based on nano-metal strips. Opt. Exp. 2013, 21, 23498–23510.

[11]. He, Y.J. Nanometal ring-array LSPR fiber sensor based on the perfectly matched layer and perfectly reflecting boundary. Sens. Actuators B Chem. 2014, 202, 346–356.

[12]. He, Y.J. Long-period fiber grating using the finite element method and eigen mode expansion method. Sens. Actuators B Chem. 2013, 183, 319–331, 2013.

[13].  K. M. Chung, Z. Liu, C. Lu, H. Y. Tam, “Highly sensitive compact force sensor based on microfiber Bragg grating,” IEEE Photon. Technol. Lett. 24(8), 700–702, 2012. 

[14].  S. C. M. Ho, M. Razavi, A. Nazeri, G. Song, “FBG sensor for contact level monitoring and prediction of perforation in cardiac ablation,” Sensors (Basel) 12(2), 1002–1013, 2012.

[15]. K. Schröder, W. Ecke, M. Kautz, S. Willett, M. Jenzer, T. Bosselmann, “An approach to  on-site monitoring of contact forces in current collectors by a fiber optic sensing system,” Opt. Lasers Eng. 51(2), 172–179, 2013.

[16].  Y. Chen, J. Ge, K. W. Kwok, K. R. Nilsson, M. P. Fok, Z. T. Tse, “MRI-conditional sensor for contact force and temperature monitoring during cardiac electrophysiological procedures,” J. Cardiovasc. Magn. Reson. 16(S1), 150–152, 2014.

[17]. S. O. Mohammadi, Saeed Mozaffari, and M. Mehdi Shahidi, “Simulation of a transmission systemto compensate dispersion in an optical fiber by chirp gratings” International journal of the Physical Sciences vol. 6(32), pp. 7354-7360, 2 Dec 2011.

[18]. Bhowmik K, Ahamed M, Reduction of disper-sion in optical fiber communication by fiber bragg grating and optical phase conjugation techniques, International Journal of  Mobile Network Communications & Telematics (IJMNCT), vol 2, No.3, 49–58, 2012.

[19]. Arora O, Punia S. Symmetrical dispersion compensation for high speed optical links, International Journal of Computer Science Issues, vol 8(6), No.1, 371–376, 2011.

[20].  Md. Jahidul Islam, Md. Saiful Islam, Md. Mahmudur Rahman. “Dispersion Compensation in Optical Fiber Communication Using Fiber Bragg Grating”.Global Journal of researches in engineering Electrical and electronics engineering Volume 12 Issue 2 Version 1.0february 2012 .

[21].  Ravi prakash shukla, Mukesh kumar, A.K. Jaiswal, Rohini Saxena. “Performance Analysis of Dispersion in Optical Communication link using Different Dispersion Compensation Fiber (DCF) models.”ISSN: 2277-3878, Volume-1, Issue-2, June 2012.

[22].  Dabhade S S, and Bhosale S. Fiber bragg grating and optical phase conjugator as dispersion compensator, International Journal of Advanced Electrical and Electronics Engineering, vol 1(1), 15–19,2012.

[23].  Slim, Israa and Mezghani, Amine and Baltar, Leonardo G and Qi, Juan and Hauske, Fabian N and Nossek, Josef A, "Delayed single-tap frequency-domain chromatic-dispersion compensation", Photonics Technology Letters, IEEE, 25, 2, 167--170, 2013

[24]. Karar, A and Cartledge, J, "Electronic Post-Compensation of Dispersion for DML Systems Using SCM and Direct Detection", IEEE Photonics Technology Letters, 25, 9, 825--828, 2013.

[25]. Mori, Takayoshi and Sakamoto, Taiji and Yamamoto, Takashi and Tomita, Shigeru, "Modal dispersion compensation by using digital coherent receiver with adaptive equalization in multi-mode fiber transmission", Optical Fiber Technology, 19, 2, 132--138, 2013

[26]. Tahvili, Saeed and Latkowski, Sylwester and Smalbrugge, Barry and Leijtens, Xaveer JM and Williams, Peter J and Wale, Mike J and Parra-Cetina, Josue and Maldonado-Basilio, Ramón and Landais, Pascal and Smit, Meint K and others, "InP-Based Integrated Optical Pulse Shaper: Demonstration of Chirp Compensation", IEEE Photonics Technology Letters, 25, 5, 450--453, 2013.

[27]. Wang, Dawei and Lau, A and Wai, PK and He, S and others, "Adaptive CD Estimation for Coherent Optical Receivers Based on Timing Error Detection", IEEE Photonics Technology Letters, 2013.

[28]. C. Xie, "Chromatic Dispersion Estimation for Single-Carrier Coherent Optical Communications", IEEE Photonics Technology Letters, 2013.

[29].  Pelusi Mark D. “WDM Signal All-Optical Pre compensation of Kerr Nonlinearity in Dispersion-Managed Fibbers” IEEE Photonics Technology Letters, Vol. 25, No. 1, pp 71-74, 2013.

[30]. Xie Chongjin “Chromatic Dispersion Estimation for Single -Carrier Coherent Optical Communications” IEEE PHOTONICS TECHNOLOGY LETTERS, VOL. 25, NO. 10, pp 992-995, 2013.

[31]. M. Esposito, S.Buontempo, A.Petriccione, M.Zarrelli, G. Breglio, A. Saccomanno, Z. Szillasi, A. Makovec, A. Cusano, A. Chiuchiolo, M. Bajko, M. Giordano,“Fiber Bragg Grating sensors to measure the coefficient of thermal expansion of polymers at cryogenic temperatures,” Sensors and Actuators A Physical 189, 195-203,2013.

[32]. Franz Fidler, Markus Knapek, Joachim Horwath, and Walter R.Leeb, “Optical Communications for High-Altitude Platforms”, IEEE Journal of Selected Topics in Quantum Electronics, Vol. 16, no. 5, September/October 2010.

[33]. Colin Yao, “The Future of Fiber Optic Communication”, available at: www.streetdirectory.com, 2013.

[34] “Status of Optical Communication Technology and Future Trends”, available at: www.qqread.net, 2013.

[35] M. Noshada, A. Rostami, “FWM minimization in WDM optical communication systems using the asymmetrical dispersion managed fibers”, International Journal for Light and Electron Optics, vol. 123, no. 9, pp. 758– 760, 2012.