МАТЕМАТИЧЕСКАЯ МОДЕЛЬ ЗАЩИЩЕННОГО ИНФОРМАЦИОННОГО ОБМЕНА ДЛЯ БЕСПРОВОДНЫХ СИСТЕМ БЕЗОПАСНОСТИ
Работая с нашим сайтом, вы даете свое согласие на использование файлов cookie. Это необходимо для нормального функционирования сайта, показа целевой рекламы и анализа трафика. Статистика использования сайта отправляется в «Яндекс» и «Google»
Научный журнал Моделирование, оптимизация и информационные технологииThe scientific journal Modeling, Optimization and Information Technology
Online media
issn 2310-6018

MATHEMATICAL MODEL FOR SECURE INFORMATION EXCHANGE FOR WIRELESS SECURITY SYSTEMS

Gavrishev A.A.  

UDC 004.056
DOI: 10.26102/2310-6018/2018.23.4.032

  • Abstract
  • List of references
  • About authors

Currently, there is a rapid increase in technical equipment and training of persons who commit illegal acts. In this regard, the number of attempts to carry out criminal attacks on objects of high importance has increased dramatically. For perimeter protection of sites of high categories of significance from unlawful attacks using different security system. A great development is a variety of security systems built on the basis of wireless communication lines. At the same time, it is known that wireless security systems themselves are subject to destructive actions aimed at disrupting their performance. Protection against unauthorized access of alarm and service messages in security systems when they are transmitted over a wireless communication channel is an urgent task. One of the main technologies to protect the radio channel of security systems from unauthorized access is the use of noise-like signals. A promising technology for improving the security of information exchange based on noise-like signals is the use of chaotic signals. However, there are very few algorithms for secure information exchange based on chaotic signals for wireless security systems. One of the known algorithms of protected information exchange based on chaotic signals is presented. It is noted that there is no formalized mathematical description of this algorithm of protected information exchange, which allows to understand more clearly the process of its functioning, in the known literature. In this regard, the author, partly on the basis of the well-known literature, for this algorithm of secure information exchange developed a mathematical model, an explanatory block diagram of the developed mathematical model. With the help of a well-known algorithm of secure information exchange and a mathematical model developed on its basis, it is potentially possible to increase the security of transmitted messages from unauthorized access to various wireless security systems. Also, the proposed example on the mathematical description of the algorithm of secure information exchange, due to its simplicity, may be extended to a wider class of algorithms for secure information exchange

1. Chlenov A.N. Analysis of methods of neutralizing alarm protection systems categorized objects / A.N. Chlenov, N.A. Ryabtsev, A.N. Fedin. Technology of technosphere safety. 2017. no. 3 (73). pp. 271-279 (In Russian).

2. Filippov D.L. Problems of information leakage at the creation of the physical protection system of large objects / D.L. Filippov. Spetstekhnika i svyaz’ — Specialized machinery and communication. 2015. no. 2. pp. 50 – 53 (in Russian).

3. Gavrishev A.A. Analysis of protection technologies radio fire alarm systems against unauthorized access / A.A. Gavrishev, A.P. Zhuk, D.L. Osipov. SPIIRAS Proceedings. 2016. i. 47(4). pp. 28-45 (In Russian).

4. Braude-Zolotarev Yu. Safety radio’s algorithms / Yu. Braude-Zolotarev. Algoritm bezopasnosti – Safety algorithm. 2013. v. 1. pp. 64-66 (In Russian).

5. Sivashchenko S.I. Secrecy of radio system with difficult and chaotic signals / S.I. Sivashchenko. Systemy upravlinnja, navigacii' ta zv’jazku – Systems of control, navigation and communication. 2009. v. 3(11). pp. 56–58 (in Russian).

6. Gavrishev A.A., Zhuk A.P. Generalized algorithm of secure information exchange / A.A. Gavrishev, A.P. Zhuk. Vestnik SibGUTI. 2018. no. 1. pp. 33- 40 (In Russian).

7. . Gavrishev A.А. Application of methods of nonlinear dynamics to study the chaotic state of the carrier signals of secure communication systems based on dynamic chaos / A.А. Gavrishev, A.P. Zhuk. Vestnik NSU. Series: Information Technologies. 2018. vol. 16. no. 1. pp. 50–60 (In Russian).

8. Barichev S.G. Osnovy sovremennoj kriptografii [Foundations of modern cryptography]. Training course / S.G. Barichev, V.V. Goncharov, R.E. Serov. 3d edition. Moscow. Goryachaya liniya-Telekom Publ. 2011. 175 p. (In Russian).

Gavrishev Alexey Andreevich

Email: alexxx.2008@inbox.ru

FSAEI HE "NCFU"

Stavropol, Russian Federation

Keywords: mathematical model, radio channel, security systems, security, information exchange

For citation: Gavrishev A.A. MATHEMATICAL MODEL FOR SECURE INFORMATION EXCHANGE FOR WIRELESS SECURITY SYSTEMS. Modeling, Optimization and Information Technology. 2018;6(4). Available from: https://moit.vivt.ru/wp-content/uploads/2018/10/Gavrishev_4_18_1.pdf DOI: 10.26102/2310-6018/2018.23.4.032 (In Russ).

479

Full text in PDF