The Engagement of Hybrid Ultra High Space Division Multiplexing with Maximum Time Division Multiplexing Techniques for High-Speed Single-Mode Fiber Cable Systems

Author:

Amiri I. S.12,Kuppusamy P. G.3,Rashed Ahmed Nabih Zaki4,Jayarajan P.1,Thiyagupriyadharsan M. R.5,Yupapin P.1

Affiliation:

1. Computational Optics Research Group, Advanced Institute of Materials Science , Ton Duc Thang University , Ho Chi Minh City 700000 , Vietnam

2. Faculty of Applied Sciences , Ton Duc Thang University , Ho Chi Minh City 700000 , Vietnam

3. Department of ECE , Siddharth Institute of Engineering and Technology , Puttur , Andhra Pradesh , India

4. Electronics and Electrical Communications Engineering Department , Menoufia University , Faculty of Electronic Engineering , Menouf 32951 , menoufia , Egypt

5. Department of ECE , Sri Krishna College of Technology , Kovaipudur , Coimbatore , India

Abstract

Abstract High-speed single-mode fiber-optic communication systems have been presented based on various hybrid multiplexing schemes. Refractive index step and silica-doped germanium percentage parameters are also preserved during their technological boundaries of attention. It is noticed that the connect design parameters suffer more nonlinearity with the number of connects. Two different propagation techniques have been used to investigate the transmitted data rates as a criterion to enhance system performance. The first technique is soliton propagation, where the control parameters lead to equilibrium between the pulse spreading due to dispersion and the pulse shrinking because of nonlinearity. The second technique is the MTDM technique where the parameters are adjusted to lead to minimum dispersion. Two cases are investigated: no dispersion cancellation and dispersion cancellation. The investigations are conducted over an enormous range of the set of control parameters. Thermal effects are considered through three basic quantities, namely the transmission data rates, the dispersion characteristics, and the spectral losses.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics

Reference10 articles.

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3. Rekha MK. Analysis and comparison of dispersion compensation by DCF schemes & fiber bragg grating. Int J Comput Technol Appl. 2016;9:165–76.

4. Nogesh R, Mohan RR, Asho RS. A survey on dispersion management using optical solitons in optical communication system. Procedia Technol. 2016;25:552–9.

5. Patel MG, Khant SB. Soliton transmission in fiber optics for long distance communication. Int J Adv Res Electr Electron Instrum Eng. 2014;3:7100–7.

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