Integration Of Fuzzy Set Approach For Comprehensive Study Of Sustainable Functioning Of The Telecommunication System Of Uzbekistan
U.O. Qutliyev , Associate Professor, Urgench State University, Urgench, Uzbekistan E.Sh. Avazov , Associate Professor, Urgench Branch Of Tashkent University Of Information Technologies Named After Muhammad Al-Khwarizmi, Urgench, Uzbekistan I.I. Omonov , Assistant, Urgench Branch Of Tashkent University Of Information Technologies Named After Muhammad Al-Khwarizmi, Urgench, Uzbekistan M.M. Muradov , Assistant, Urgench Branch Of Tashkent University Of Information Technologies Named After Muhammad Al-Khwarizmi, Urgench, UzbekistanAbstract
In the article the methods of evaluation based on fuzzy logic and network modelling based on the theory of fuzzy sets to the challenges of sustainable operation of telecommunications systems. The factors affecting the sustainable operation of telecommunication systems using fuzzy sets.
Keywords
Telecommunication networks, uncertainty sets theory, logical model, telecommunication systems, complex model, linguistic variables, state of TN, the influence of external factors, the influence of internal factors, influence of energy factors
References
Jue, J. P., & Vokkarane, V. M. (2006). Optical burst switched networks. Springer Science & Business Media.
Duser, M., & Bayvel, P. (2001, October). Analysis of wavelength-routed optical burst-switched network performance. In Proceedings 27th European Conference on Optical Communication (Cat. No. 01TH8551) (Vol. 1, pp. 46-47). IEEE.
Vokkarane, V. M., & Jue, J. P. (2002, March). Prioritized routing and burst segmentation for QoS in optical burst switched networks. In Optical Fiber Communication Conference and Exhibit (pp. 221-222). IEEE.
Golyshko, A.V., & Leskova, N.A. (2001). Optical switching of blocks. Communication networks and systems, (8), 41.
Nizharadze, T.Z. (2007). Development and research of a dynamic routing algorithm model for GMPLS networks.
Recommendations ITU-T, E.600 (03/93). Terms and Definitions of Traffic Engineering.
Recommendations ITU-T, M.2100 (07/05). Performance Limits for bringing – into service and maintenance of International PDH Path, section and transmission systems;
Abdullaev D.A. (2007). A probabilistic model of the data transmission system, reports of the Academy of Sciences of the Republic of Uzbekistan, Tashkent, No. 2 pp. 42-45.
Abdullaev, D.A. (2011). An implicative approach to the problems of calculating conditional probabilities and calculating the probability of errors in digital data transmission paths. Telecommunication, (6), 51-56.
Olifer, W., & Olifer, N. (2001). The art of traffic optimization. LAN Networking Solutions Journal, (12), 21-26.
Fokin, V.G. (2009). Designing an optical multiservice transport network.
Davydkin, P.N., Koltunov, M.N., & Ryzhkov, A.V. (2004). Clock network synchronization.
Ionov, A.D. (2003). Fibre optic transmission lines: a tutorial. Novosibirsk, 1999. – 132s.
Ryabinin, I.A. (2000). Reliability and safety of structurally complex systems [Electronic resource]. Access mode: http://proatom.ru/modules.php.
Dudnik, B. Ya. (1984). Reliability and survivability of communication systems. Radio and communication. p.216.
Article Statistics
Copyright License
Copyright (c) 2021 The American Journal of Engineering and Technology
This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors retain the copyright of their manuscripts, and all Open Access articles are disseminated under the terms of the Creative Commons Attribution License 4.0 (CC-BY), which licenses unrestricted use, distribution, and reproduction in any medium, provided that the original work is appropriately cited. The use of general descriptive names, trade names, trademarks, and so forth in this publication, even if not specifically identified, does not imply that these names are not protected by the relevant laws and regulations.