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.
-
Author contributions: All the authors have accepted responsibility for the entire content of this submitted manuscript and approved submission.
-
Research funding: None declared.
-
Conflict of interest statement: The authors declare no conflicts of interest regarding this article.
References
1. Gnauck, AH, Tkach, RW, Chraplyvy, AR, Li, T. High-capacity optical transmission systems. J Lightwave Technol 2008;26:1032–45.10.1109/JLT.2008.922140Suche in Google Scholar
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.Suche in Google Scholar
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.Suche in Google Scholar
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.Suche in Google Scholar
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 2023;44:s1581–6. https://doi.org/10.1515/joc-2020-0282.Suche in Google Scholar
6. Mahawar, N, Khunteta, A. Design and performance analysis of WDM optical communication system with EDFA-DCF and FBG for dispersion compensation using 8x5 Gbps data rate. In: International conference on communication and electronics systems (ICCES). Coimbatore, India; 2019.10.1109/ICCES45898.2019.9002236Suche in Google Scholar
7. Kumar, K, Jaiswal, AK, Kumar, M, Agrawal, N. Performance analysis of dispersion compensation using fiber bragg grating (FBG) in optical communication. Int J Curr Eng Technol 2014;4:1527–31.Suche in Google Scholar
8. Singh, K, Sarangal, H, Singh, M, Thapar, SS. Analysis of pre-, post-, and symmetrical dispersion compensation techniques using DCF on 40 × 10 Gbps WDM-PON system. Int J Latest Technol Eng Manag Appl Sci 2017;6:163–7.Suche in Google Scholar
9. Zumba, P, Cabrera, P, Coronel, E. Chromatic dispersion analysis in a WDM-PON network using FBG compensators. IEEE Lat Am Trans 2016;14:2817–22. https://doi.org/10.1109/TLA.2016.7555260.Suche in Google Scholar
10. Mohammed, NA, Moustafa, MS, Moustafa, HA, Aly, H. Design and performance evaluation of a dispersion compensation unit using several chirping functions in a tanh apodized FBG and comparison with dispersion compensation fiber. Appl Opt 2014;53:239–47. https://doi.org/10.1364/AO.53.00H239.Suche in Google Scholar PubMed
11. Badar, B, Anisha, AP. Simulative analysis and compensation of dispersion in WDM optical systems. Int J Eng Res Technol 2015;4:721–5.Suche in Google Scholar
12. Neheeda, P, Pradeep, M, Shaija, PJ. Analysis of WDM system with dispersion compensation schemes. In: 6th international conference on advances in computing & communications. Cochin, India: ICACC; 2016:6–8 pp.Suche in Google Scholar
13. Kaur, R, Singh, M. Dispersion compensation in optical fiber communication system using WDM with DCF and FBG. IOSR J Electron Commun Eng 2016;11:122–30. https://doi.org/10.9790/2834-110302122130.Suche in Google Scholar
14. Tahhan, SR, Ali, MH, Abass, AK. Characteristics of dispersion compensation for 32 channels at 40Gb/sUnder different techniques. J Opt Commun 2017;41:57–65. https://doi.org/10.1515/joc-2017-0121.Suche in Google Scholar
15. Chakkour, M, Aghzout, O, Chaoui, F. Theoretical analysis of a novel WDM optical long-haul network using the split-step fourier method. Int J Opt 2020;2020:1–9. https://doi.org/10.1155/2020/3436729.Suche in Google Scholar
16. Moura, CC, Oliveira, V, Biazoli, CR, Cordeiro, CMB, Kalinowski, HJ. Manufacture of tapered fibers and FBG writing. J Microw Optoelectron Electromagn Appl 2018;17:638–45.10.1590/2179-10742018v17i41549Suche in Google Scholar
17. Kadhim, SA, Kazr, KA, Ali, AH, Mahmood, AI. Fiber communication system based on FBG as dispersion compensator, design an experimental setup. J Phys Conf 2019;1294:022019.10.1088/1742-6596/1294/2/022019Suche in Google Scholar
18. Karunya, J, Prakash, P. Analysis of WDM system using DCF. In: Fourth international conference on signal processing, communication and networking (ICSCN). Chennai, India: IEEE; 2017.10.1109/ICSCN.2017.8085726Suche in Google Scholar
19. Kaur, M, Sarangal, H, Bagga, P. Dispersion compensation with dispersion compensating fibers (DCF). Int J Adv Res Comput Commun Eng 2015;4:354–6.10.17148/IJARCCE.2015.4280Suche in Google Scholar
20. Jansen, SL, van den Borne, D, Krummrich, PM, Spalter, S, Khoe, GD, de Waardt, H. Long-haul DWDM transmission systems employing optical phase conjugation. IEEE J Sel Top Quant Electron 2006;12:505–20. https://doi.org/10.1109/JSTQE.2006.876621.Suche in Google Scholar
© 2021 Walter de Gruyter GmbH, Berlin/Boston
Artikel in diesem Heft
- Frontmatter
- Amplifiers
- Performance analysis of long band passive optical network using amplifier spontaneous noise and fiber Bragg gratings
- Raman pumps power distribution optimization for maximum overall gain and flatness of a hybrid SOA/EDFA/Raman optical amplifier
- Devices
- A proposal for all optical digital multiplexer using photonic crystal-based nonlinear ring resonators
- A tunable optical frequency comb source using cascaded frequency modulator and Mach–Zehnder modulators
- A proposal for gray to BCD converter using nonlinear ring resonators
- An investigation and analysis of plasmonic modulators: a review
- Fibers
- High data-rate two-three inputs all-optical AND gate based on FWM in highly nonlinear fiber
- Fiber nonlinear impairments compensation based on nonlinear step size and modified adaptive digital back propagation
- Integrated Optics
- Sensing performance of Au–Ag bimetal coated planar waveguide having polyaniline polymer film for biosensing applications
- Networks
- Performance analysis of wavelength division multiplexing MDM-PON system using different advanced modulations
- Analysis of optical networks in presence of nodes noise and crosstalk
- RNN based EPON dynamic bandwidth allocation algorithm for complex network
- Efficient design of a Raman amplified wavelength division multiplexed communication network at 1330 nm
- A novel strategy to enhance the quality of service (QoS) for data center traffic in elastic optical networks
- Receivers
- Underwater wireless optical communication utilizing multiple input–multiple output (MIMO)-LED system for RF transmission with solar panel receiver
- A systematic literature review on channel estimation in MIMO-OFDM system: performance analysis and future direction
- Systems
- Effect of optical pulse shaping and adaptive equalization on the performance of 100G DP-QPSK WDM system
- Pulse width shortening combinations (PWSC) for ultra-dense WDM systems and calculation of PWSE
- Power allocation scheme in MIMO-OFDM UWOC system with varying receiver spacing channel gain analysis
- Free-space optical link optimization in visible light communication system
- Determining code parameters to achieve the maximum bandwidth efficiency in fiber-optic CDMA systems
- Optical wireless communication under the effect of low electric field
- Multibeam FSO-based 5G communication system using M-ary DPSK encoder
- Review of fibreless optical communication technology: history, evolution, and emerging trends
- Theory
- Throughput analysis of dual hop hybrid RF-VLC system with wireless energy harvesting
- Average spectral efficiency of multi-pulse position with adaptive transmissions and aperture averaging over atmospheric turbulence
- Dynamic changes of VN resource requests research on dynamic VN mapping algorithms for increasing demand for resources
Artikel in diesem Heft
- Frontmatter
- Amplifiers
- Performance analysis of long band passive optical network using amplifier spontaneous noise and fiber Bragg gratings
- Raman pumps power distribution optimization for maximum overall gain and flatness of a hybrid SOA/EDFA/Raman optical amplifier
- Devices
- A proposal for all optical digital multiplexer using photonic crystal-based nonlinear ring resonators
- A tunable optical frequency comb source using cascaded frequency modulator and Mach–Zehnder modulators
- A proposal for gray to BCD converter using nonlinear ring resonators
- An investigation and analysis of plasmonic modulators: a review
- Fibers
- High data-rate two-three inputs all-optical AND gate based on FWM in highly nonlinear fiber
- Fiber nonlinear impairments compensation based on nonlinear step size and modified adaptive digital back propagation
- Integrated Optics
- Sensing performance of Au–Ag bimetal coated planar waveguide having polyaniline polymer film for biosensing applications
- Networks
- Performance analysis of wavelength division multiplexing MDM-PON system using different advanced modulations
- Analysis of optical networks in presence of nodes noise and crosstalk
- RNN based EPON dynamic bandwidth allocation algorithm for complex network
- Efficient design of a Raman amplified wavelength division multiplexed communication network at 1330 nm
- A novel strategy to enhance the quality of service (QoS) for data center traffic in elastic optical networks
- Receivers
- Underwater wireless optical communication utilizing multiple input–multiple output (MIMO)-LED system for RF transmission with solar panel receiver
- A systematic literature review on channel estimation in MIMO-OFDM system: performance analysis and future direction
- Systems
- Effect of optical pulse shaping and adaptive equalization on the performance of 100G DP-QPSK WDM system
- Pulse width shortening combinations (PWSC) for ultra-dense WDM systems and calculation of PWSE
- Power allocation scheme in MIMO-OFDM UWOC system with varying receiver spacing channel gain analysis
- Free-space optical link optimization in visible light communication system
- Determining code parameters to achieve the maximum bandwidth efficiency in fiber-optic CDMA systems
- Optical wireless communication under the effect of low electric field
- Multibeam FSO-based 5G communication system using M-ary DPSK encoder
- Review of fibreless optical communication technology: history, evolution, and emerging trends
- Theory
- Throughput analysis of dual hop hybrid RF-VLC system with wireless energy harvesting
- Average spectral efficiency of multi-pulse position with adaptive transmissions and aperture averaging over atmospheric turbulence
- Dynamic changes of VN resource requests research on dynamic VN mapping algorithms for increasing demand for resources