Affiliation:
1. Electronics and Communications , Punjabi University Patiala , Patiala , Punjab , India
Abstract
Abstract
Optical communication systems introduced paradigm shift in the forte of data transmission at higher speeds and over longer distances where, on contrary electrical transmission systems failed due to higher amplitude degradation, interferences and lower bandwidths. However, pulse width increase (PWI) in the optical fiber limits the overall distance reach and also introduces more bit errors which needs to addressed. So far, pulse width shortening fibers (PFs) and fiber Bragg grating (FG) used individually in most of the reported studies, however pulse width shortening (PWS) took either high cost (in PFs) or lower PWS efficiency (PWSE) (in FG). Therefore, in this research manuscript, we made emphasis on the combined PWS effects of diverse techniques such as optical phase conjugation (OC), FG and PFs in ultra-dense wavelength division multiplexing (WDM) system. Total link length of 400 km has been covered in 128 channels ultra dense wavelength division multiplexing (UDWDM) system at 10 Gbps by incorporating diverse combined organized placements of FG, OC and PFs such as FG-PF, OC-PF and FG-PF-OC. Results revealed that economical and maximum PWSE arrangement for proposed system is FG-PF-OC.
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics
Reference20 articles.
1. Gnauck, AH, Tkach, RW, Chraplyvy, AR, Li, T. High-capacity optical transmission systems. J Lightwave Technol 2008;26:1032–45.
2. Zhang, L, Zuo, T, Mao, Y, Zhang, Q, Zhou, E, Liu, GN, et al.. Beyond 100-Gb/s transmission over 80-km SMF using direct-detection SSB-DMT at C-band. J Lightwave Technol 2016;34:723–9. https://doi.org/10.1109/JLT.2015.2464091.
3. Chauhan, A, Vaish, A, Verma, A. To decrease maintenance issues using FWM in ultradense WDM systems and enhancing optimum placement of optical phase conjugation. J Opt Commun 2020;41:421–7. https://doi.org/10.1515/joc-2017-0202.
4. Chauhan, A, Vaish, A, Verma, A. Compensation of SPM and dispersion in long reach COOFDM system with multiple symmetrical dispersion compensation and midlink spectrum inversion modules. Int J Microw Opt Technol 2018;13:98–105.
5. Chauhan, A, Yadav, I, Dhawan, P, Kaur, S, Verma, A. Nonlinear/dispersion compensation in dual polarization 128-QAM system incorporating optical backpropagation. J Opt Commun. Degruyter 2021. https://doi.org/10.1515/joc-2020-0282 [Epub ahead of print].