Maximizing the Efficiency of Hybrid Optical Amplifiers in Dense Wavelength Division Multiplexing Networks
Keywords:
“DWDM; EDFA; optical network; OptiSystem; ROA; SOA”Abstract
In this study, we explore how to use amplification methods to enhance the DWDM system's transmission qualities. Changing the kind of optical amplifier used or modifying the specifications of the optical amplifiers might affect the parameter values. Optimization is a synopsis of the relevant information about the hardware and software in use. A series of simulations are run to test these hypotheses, and the resulting numerical values are compared to those reported in the cited papers. Over very great distances, the suggested design using many EDFA amplifiers has been shown to outperform those using only one. The suggested technique also outperforms other methods developed for the same goal in terms of transmission characteristics.
References
Patnaik, B.; Sahu, P.K. Excellent quality 1.28 Tbps DWDM structure plan and amusement utilizing streamlined change plan. Optik 2013, 124, 1567-1573.
Sadinov, S.M.; Angelov, K.K.; Kogias, P. Appearing and execution appraisal of DWDM uninvolved optical partnership. IOP Conf. Series Mater. Sci. Eng. 2021, 1032, 012003.
Ivanovs, G.; Bobrovs, V.; Olonkins, S.; Alsevska, A.; Gegere, L.; Parts, R.; Gavars, P.; Lauks, G. Application of the erbium-doped fiber amplifier (EDFA) in wavelength division multiplexing (WDM) transmission systems. Int. J. Phys. Sci. 2014, 9, 91–101.
Hasanuzzaman, R.; Islam, M.; Sekh, M.A. Examination of Siphoning Structures in Erbium Doped Fiber Speaker (EDFA). Int. J. Eng. Res. Technol. 2017, 6, 261-264.
Thakral, N.; Kumar, L. Execution examination of various cross mix optical speakers for DWDM structure. In Designs of the 2016 IEEE Yearly India Meeting (INDICON), Bangalore, India, 16-18 December 2016.
Cho, P.; Achiam, Y.; Obligation Yurista, G.; Margalit, M.; Gross, Y.; Khurgin, J. Evaluation of SOA Nonlinearities on the Improvement of DWDM Channels with Crazy Ampleness Up to 2.5 b/s/Hz. IEEE Photonics Technol. Lett. 2004, 16, 918-920.
Gill, M.S.; Dewra, S. Analysis of DWDM System Using DPSK Modulation Technique with Raman–EDFA Hybrid Optical Amplifier. J. Opt. Commun. 2017, 38, 361–365.
Mustafa M. Matalgah and Redha M. Radaydeh, “Hybrid Frequency-Polarization Shift-Keying Modulation for Optical Transmission” IEEE journal of lightwave technology, Vol. 23, no. 3, March 2005.
C.A. Brackett, “Dense wavelength division multiplexing networks: Principles and applications,” IEEE J. Sel. Areas Commun. 8, pp. 948–964, 1990.
Sanjeev Dewra, R. S. Kaler, “ Performance evaluation of an optical network based on optical Cross add drop multiplexer” J. Opt. Technol. 80 (8), August 2013.
Garima Arora, Mr. Sanjeev Dewra, “DWDM Transmission using Hybrid Optical Amplifiers” International Journal of Advanced Research in Computer and Communication Engineering, Vol. 3, Issue 4, April 2014..
A. Ahmad et al., Investigation of hybrid gain-clamped Ramanfiber amplifier/ EDFA utilizing pump reuse technique, Laser Phys. Lett. 5, pp no. 202–205, 2008.
C. Sun Hyok et al., Characteristics of low noise hybrid fiber amplifier, Opt. Commun. 261, pp no. 269–275, 2006.
Garima Arora, Mr. Sanjeev Dewra, “A review on optical Amplifier its Hybrid Configurations, International Journal of Electronics & Communication Engineering Research” Vol. 1 Issue 6, November-2013.
Ju han Lee, “dispersion compensating RAMAN/EDFA hybrid amplifier recycling residual RAMAN pump for efficiency enhancement” IEEE photonics letters, Vol 17, no. 1, 2005.
Simranjit Singh, R.S. Kaler, “Placement of hybrid optical amplifier in fiber optical Communication systems” Optik 123, pp. 1636–1639, 2012.
R.S. Kaler, “Optimization of hybrid Raman/erbium-doped fiber amplifier for multi terabits WDM system” Optik 124, pp no. 575– 578, 2013.
Jian-guo Yuan, Tian-yu Liang, Wang, Sheng Gu, “Impact analysis on performance optimization of the hybrid amplifier (RA + EDFA)” Optik 122 pp no. 1565– 1568, 2011.