Creation of a Software Model with a Graphical User Interface for simulating the processes of functioning of subsystems of information and cyber protection of Distributed Information Systems of Critical Infrastructures
pdf

Keywords

information systems
information security
cybersecurity
critical infrastructures
modeling
multi-channel queuing systems
graphical user interface

How to Cite

Ramaz Shamugia. (2021). Creation of a Software Model with a Graphical User Interface for simulating the processes of functioning of subsystems of information and cyber protection of Distributed Information Systems of Critical Infrastructures. Georgian Scientists, 3(4), 70–84. https://doi.org/10.52340/gs.2021.11.07

Abstract

This article is dedicated to the development of a software model with a Graphical User Interface (GUI) to simulate the process of ensuring information and cyber security of information systems (IS) of Critical Infrastructure objects (CI) based on the analytical model developed by the author of this article. The specified software model with a GUI makes it possible, using the controls located on the main panel, to set the input parameters of the simulated object and observe its output characteristics using appropriate visualization elements such as special windows for displaying calculated numerical values of the main characteristics of the systems under study.

https://doi.org/10.52340/gs.2021.11.07
pdf

References

Klimov S.M., Polikarpov С.В., Rijov B.C., Tichonov R.I.,Shpirnja I.V. Metodika obespechenija ustoichivosti funkcionirovanija kriticheskoi informacionni infrastrukturi v uslovijax informacionnix vozdeistvii// Voprosi kiberbezopasnosti. 2019. № 6(34).

Kondakov С.Е., Mesherjakov Т.В., Scril С.В., Stadnik А.Н., Suvorov А.А. Verojtnostnoe predstavlenie uslovii sovremennogo reagirovanija na ugrozi kompiuternix atak // Вопросы кибербезопасности. 2019. № 6(34).

Zaxarchenko R.I.,Koroliov I.D. Model funkcionirovanija avnomatizirovannoi informacionnoi sistemi v kibrprostranstve // Voprosi kiberbezopasnosti. 2019. № 6(34).

Gapanovich V.A., Chubinskii I.B., Zamuchljev A.M. Metod ozenki riskov sistemu iz raznotipnuch elementov// Nadezhnost. 2016. Tom 16. №2 s.49-53.

. Klimov S.M., Kotjchev N.N. Metod regulirovanij riskov kompleksov sredstv avtomatizacii v uslovijch kompjyternuch atak// Nadezhnost. 2013. №2 s. 93-107.

Chubinskii I.B., Funkcionalnaj nadezhnost informacionnuch system. Metodu analiza/ I.B Chubinskii. - Uljnovsk: Oblastnaj tipografij «Pechatnui dvor», 2012. 296 s.

Bezkorovainy, M. and Tatuzov, A. (2014) Cybersecurity—Approaches to the Definition. Voprosi Kiberbezopasnosti, No. 1.

Starovojtov, A.V. (2011) Cybersecurity as an Actual Modern Problem. Informatization and Communication, 6, 4-7.

Bezkorovajnyj, M.M., Losev, S.A. and Tatuzov, A.L. (2011) Cybersecurity in the Modern World: Terms and Content. Informatization and Communication, 6, 27-32.

Shamugia, R.R. (2020) Development of an Analitical Model of the Process of Cybersecurity Protection of Distributed Information Systems of Critical Infrastructure. International Journal of Communications, Network and System Sciences, 13, 161-169. https://doi.org/10.4236/ijcns.2020.1310010

Saati, T.L. (1965) Elements of Queuing Theory and Its Application. Sovetskoe Radio, Moscow, 510.

Cherkesov, G.N. (1974) Dependability of Technical Systems with Time Redundancy. Sovetskoe Radio, Moscow, 296.

Gnedenko, B.V. and Kovalenko, I.N. (2012) Introduction to Queuing Theory. LKT, 400.

Feller, W. (1971) An Introduction to Probability Theory and Its Applications. Vol. 2, John Willey and Sons, New York, 766.

Shubinski, I.B. (2016) Nadejnie otkazoustoichivie informacionnie sistemi. Metodi sinteza-M. Jurnal Nadejnost, 546 str.il.

Shamugia R.R. (2014) On One Model of Complex Technical Queuing System with Unreliable Devices and with Time Redundancy. International Journal of Communications, Network and System Sciences, 7, 257-264. https://doi.org/10.4236/ijcns.2014.78028.

Shamugia R.R. (2014) On One Model of Multichannel Queuing System with Unreliable Repairable Servers and Input Memory. International Journal of Communications, Network and System Sciences, 7, 279-285. https://doi.org/10.4236/ijcns.2014.78030

Shamugia R.R. (2015) On One Analytical Model of a Probability Estimation of Quality and Efficiency of Functioning of Complex Technical Queuing Systems. International Journal of Communications, Network and System Sciences, 8, 295-303. https://doi.org/10.4236/ijcns.2015.88029

Shamugia R.R. (2016) Probabilistic Model of Technical Queuing Systems with Subsystems for Detection and Recovery of Failures. International Journal of Communications, Network and System Sciences, 9, 305-310. https://doi.org/10.4236/ijcns.2016.98027

Ramaz R. Shamugia, Development of the Software Application with Graphical User Interface for One Model Cyber Security, International Journal of Communications, Network and System Sciences Vol.12 No.12, Pub. Date: December 13, 2019, DOI: 10.4236/ijcns.2019.1212014 ;

Shamugia, R.R. (2018) Development and Investigation of the Program Model of Multichannel Queueing System with Unreliable Recoverable Servers in Matlab Environment. International Journal of Communications, Network and System Sciences, 11, 229-237. https://doi.org/10.4236/ijcns.2018.1111014

Creative Commons License

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...