Research of ways to improve the security of corporate networks
https://doi.org/10.21822/2073-6185-2024-51-3-110-116
Abstract
Objective. The article explores a way to improve the security of a corporate network by using the technique of spoofing sender addresses when forwarding packets between computers. Method. Network traffic analysis methods, network protocol level programming and data packet processing algorithms are used. Computers on the network are connected to one server. When sending packets between computers in the network, the sender's address is replaced, and when a packet is received by another computer, the packet is disassembled, and the real sender's address is inside it. Result. The method allows for effective protection of a corporate network from attacks associated with the forgery of addresses of data packet senders. Conclusion. Using the sender address substitution technique when transmitting data in a corporate network is an effective way to increase security and protection from external threats. Further research is aimed at developing complex and reliable methods for protecting networks.
About the Authors
N. F. MakhmutovaRussian Federation
Nuria F. Makhmutova, Student, Department of Secure Communication Systems
22 Bolshevikov Ave, St. Petersburg 193232
E. V. Birikh
Russian Federation
Ernest V. Birikh, Senior Lecturer of the Department of Secure Communication Systems
22 Bolshevikov Ave, St. Petersburg 193232
D. V. Sakharov
Russian Federation
Dmitrii V. Sakharov, Cand. Sci. (Technical), Assoc. Prof., Assoc. Prof. of the Department of Secure Communication Systems
22 Bolshevikov Ave, St. Petersburg 193232
A. S. Krivets
Russian Federation
Andrey S. Krivets, Student, Department of Secure Communication Systems
22 Bolshevikov Ave, St. Petersburg 193232
M. A. Degtyarev
Russian Federation
Maxim A. Degtyarev, Student, Department of Secure Communication Systems
22 Bolshevikov Ave, St. Petersburg 193232
References
1. Vereshchagin K.V. Protection of corporate networks from ddos attacks: modern methods and trends. Scientific leader. 2023; 12-15. (In Russ)
2. Pronko A.S. analysis of traffic classification methods in networks. Technique and technology of modern productions. - Penza: Penza state agrarian university, 2023; 348-351. (In Russ)
3. Kistruga A.Yu., kovtsur M.M., sharapov R.I. research of approaches to the analysis of wlan chipsets in order to identify hardware vulnerabilities. Actual problems of infotelecommunications in science and education (apino 2023). St. Petersburg: 2023; 628-631. (In Russ)
4. IEEE standard for information technology.Telecommunications and information exchange between systems local and metropolitan area networks. Specific requirements - part 11: wireless lan medium access control (mac) and physical layer (phy) specifications,” ieee
5. Kryshchenko N.I., Minyaev A.A., Kovtsur M.M. A study of manufacturers' recommendations for the safe configuration of wireless equipment " In the collection: regional informatics and information security. Proceedings of the XVIII Anniversary St. Petersburg international conference. St. Petersburg, 2022; 592-596. (In Russ)
6. Drepa V. E., kistruga A. Yu., kovtsur M. M. Accuracy of determining the location of the wi-fi client in free space when using the received signal level indicator. In the book: regional informatics (ri-2022). Jubilee xviii st. Petersburg international conference. Conference materials. St. Petersburg, 2022; 549-550. (In Russ)
7. W. Ciezobka et al., “Ftmrate: collision-immune distance-based data rate selection for ieee 802.11 Networks,” 2023 ieee 24th international symposium on a world of wireless, mobile and multimedia networks (wowmom), Boston, Ma, Usa, 2023; 242
8. Mirsaidova N.S. Ensuring information security in various networks. State administration. National academy of sciences of Tajikistan, 2023; 339-347.
9. Salimgareev K.I. protection of corporate data. Strategic development of innovative potential of industries, complexes and organizations. Ufa: Ufa university of science and technology, 2023; 361-364. (In Russ)
10. Chenzheev D.A. Information protection in corporate companies. I december corporate readings "corporate organizations: from creation to successful activity". Novosibirsk: petrozavodsk state university, 2022;. 229-233. (In Russ)
11. Tkacheva E.G., Kalashnikov V.S. analysis of attacks on wi-fi networks. Scientific aspect. Moscow: Bauman moscow state technical university, 2024; 4977-4983. (In Russ)
12. Bader dan pure python. The intricacies of programming for the pros. St. Petersburg: peter, 2020; 288. (In Russ)
13. Vasliyev A.N. python programming in examples and tasks. Moscow: eksmo, 2021; 616. (In Russ)
14. Uchinin A.S., Tsvetkov A.Yu. Research of basic characteristics and functional capabilities of siem systems. Аctual problems of infotelecommunications in science and education (apino 2023). St. Petersburg: 2023; 910-916. (In Russ)
15. Ignatieva D.A., Pestov I.E., Fedorova E.S., Fdotovskaya A.D. Analysis big data for information security. Actual problems of infotelecommunications in science and education . St. Petersburg: 2023; 567-572(In Russ)
16. Petrova T.V., Kovtsur M.M., Karelsky P.V., Polyanicheva A.V. approaches to detecting an attacker's wireless access point in a local computer network. Regional informatics (ri-2022). St. Petersburg: 2022;572-573. (In Russ)
17. Drepa V.E., Kovtsur M.M., Sakharov D.V., Sharapov R.I. investigation of the method of detecting attacks on tdls: vulnerability analysis and proposed solutions. Regional informatics and information security proceedings of the st. Petersburg international conference. St. Petersburg, 2023; 375-378. (In Russ)
18. Kryshchenko N.I., Minyaev A.A., Kovtsur M.M. research of manufacturers' recommendations on safe configuration of wireless equipment. Regional informatics and information security proceedings of the st. Petersburg international conference. St. Petersburg, 2023; 592-596. (In Russ)
19. Makhmutova N. F., Kistruga A. Y., Kovtsur M. M., wips as the basis for protecting a wireless corporate network. REDS: telecommunication devices and systems. Moscow: 2024; 56-60. (In Russ)
20. Patent of the russian federation no. 2490703c1. Method of protecting the communication channel of a computer network. Balyasov A.E., Bukharin V.V., Golub B.V., Kiryanova. V., Sakharov D. V., Starodubtsev Y.U. I.//06/04/2012. (In Russ)
Review
For citations:
Makhmutova N.F., Birikh E.V., Sakharov D.V., Krivets A.S., Degtyarev M.A. Research of ways to improve the security of corporate networks. Herald of Dagestan State Technical University. Technical Sciences. 2024;51(3):110-116. (In Russ.) https://doi.org/10.21822/2073-6185-2024-51-3-110-116