Control of Telecommunication Network Parameters under Conditions of Uncertainty of the Impact of Destabilizing Factors

Author:

Kozlovskyi Valerii1,Shvets Ivan1,Lysetskyi Yurii1,Karpinski Mikolaj23ORCID,Shaikhanova Aigul4ORCID,Shangytbayeva Gulmira5

Affiliation:

1. Department of Information Protection System, National Aviation University, 1 Liubomyra Huzara Ave., 03058 Kyiv, Ukraine

2. Department of Computer Science, University of Applied Sciences in Nowy Sacz, 33-300 Nowy Sacz, Poland

3. Department of Cyber Security, Faculty of Computer Information Systems and Software Engineering, Ternopil Ivan Puluj National Technical University, 56 Ruska St., 46001 Ternopil, Ukraine

4. Department of Information Security, L.N. Gumilyov Eurasian National University, 2 Satpayev St., Astana 010008, Kazakhstan

5. Department of Computer Science and Information Technology, Faculty of Physics and Mathematics, K. Zhubanov Aktobe Regional University, 34 A. Moldagulova Prospect, Aktobe 030000, Kazakhstan

Abstract

The classification of the natural and anthropogenic destabilizing factors of a telecommunications network as a complex system is presented herein. This research shows that to evaluate the parameters of a telecommunications network in the presence of destabilizing factors, it is necessary to modify classical linear methods to reduce their sensitivity to the incompleteness of a priori information. Using generalized linear models of multiple regression, a combined method was developed for assessing and predicting the survivability of a telecommunications network under conditions of uncertainty regarding the influence of destabilizing factors. The method consists of accumulating current information about the parameters and state of the network, the statistical analysis and processing of information, and the extraction of sufficient sample statistics. The basis of the developed method was balancing multiple correlation–regression analysis with the number of regression equations and the observed results. Various methods of estimating the mathematical expectation and correlation matrix of the observed results under the conditions of random loss of part of the observed data (for example, removing incomplete sample elements, substituting the average, pairwise crossing out, and substituting the regression) were analyzed. It was established that a shift in the obtained estimates takes place under the conditions of a priori uncertainty of the statistics of the observed data. Given these circumstances, recommendations are given for the correct removal of sample elements and variables with missing values. It is shown that with significant unsteadiness of the parameters and state of the network under study and a noticeable imbalance in the number of regression equations and observed results, it is advisable to use stepwise regression methods.

Publisher

MDPI AG

Reference27 articles.

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2. Deb, A. (2018). Control Systems Analysis and Identification, CRC Press.

3. Liu, Q., Wang, Z., and He, X. (2019). Stochastic Control and Filtering over Constrained Communication Networks, Springer Nature Switzerland AG.

4. Dodonov, A.G., and Lande, D.V. (2011). The Survivability of Information Systems, Nauk.

5. Network Survivability for Multiple Probabilistic Failures;Diaz;IEEE Commun. Lett.,2014

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