Кафедра "Кібербезпека"

Постійне посилання колекціїhttps://repository.kpi.kharkov.ua/handle/KhPI-Press/63626

Офіційний сайт кафедри https://cybersecurity.kpi.kharkov.ua

Кафедра "Кібербезпека" створена 11 січня 2022 року.

Кафедра активно співпрацює у галузі освіти та наукових досліджень із провідними ІТ-компаніями (Distributed Lab, Сайфер, Microcrypt Technologies). Викладачі кафедри та студенти, що навчаються за напрямом кафедри, активно використовують ресурси хмарних обчислень та застосовують технології сучасних мереж і засоби кібербезпеки разом із провідними фахівцями.

Кафедра проводить міжнародну науково-практичну конференцію “Інформаційна безпека та інформаційні технології” в рамках міжнародного науково-практичний форуму "Цифрова реальність", є співорганізатором міжнародного конгресу ”Human-Computer Interaction, Optimization and Robotic Applications” (IEEE, Анкара, Турція).

Кафедра входить до складу Навчально-наукового інституту комп'ютерних наук та інформаційних технологій Національного технічного університету "Харківський політехнічний інститут".

На кафедрі "Кібербезпека" працюють 11 викладачів, з них 3 мають науковий ступінь доктора технічних наук, 5 – науковий ступінь кандидата технічних наук; 3 – звання професора, 8 – звання доцента.

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  • Ескіз
    Документ
    Justification of directions for improving authentication protocols in information and communication systems
    (Національний авіаційний університет, 2023) Havrylova, Alla; Khokhlachova, Yuliia; Tkachov, Andrii; Voropay, Natalya; Khvostenko, Vladyslav
    The analysis of information about the conducted cyber-threats makes it possible to identify modern information security problems when transmitted through unprotected communication channels. When conducting such an analysis, various components of the methods of implementing cyber threats are considered, but in this paper, it is proposed to pay attention to the motivational component of the emergence of threats and the existing effective tools for countering them. Such a comprehensive approach will make it possible to predict various modes of cyberattacks that cybercriminals can use against certain systems and to prepare the necessary digital security systems for the implementation of future threats. The influence of the exponential growth of the capacities of computing devices on the growth of the possibilities of implementing attacks by cybercriminals on cryptographic algorithms was also revealed. In this regard, the work considered the possibilities of increasing the level of resistance to such interventions, which are ensured by the NIST requirements for stability and security in the conditions of the post-quantum period. To determine the level of security of data transmission over an insecure network with privacy, integrity and authentication, a comparative analysis of the capabilities of information transmission protocols was conducted. The results of the analysis are presented in the form of a scheme of security and stability of protocols and algorithms that made it to the finals of the NIST competition. To ensure the integrity and authenticity of users when establishing communication sessions with websites, it is recommended to use TLS protocols. A scheme of the process of authenticated encryption and verification ofthe authenticity of an encrypted message transmitted using a TLS connection has been developed. The process diagram of authentication encryption and decryption of information when establishing a communication session in TLS protocols has been developed. A comparative analysis of different versions of TLS protocols was carried out.
  • Ескіз
    Документ
    The concept of building security of the network with elements of the semiotic approach
    (Технологічний Центр, 2023) Yevseiev, S. P.; Tolkachov, Maksym; Shetty, Darshan; Khvostenko, Vladyslav; Strelnikova, Anna; Milevskyi, Stanislav; Golovashych, Sergii
    The main scientific results: the concept of a structured protection system with the Zero Trust Security approach has been developed. The structure of the semiotic analysis of the segmentation of the transmitted load on the blocks is proposed. Blocks by signs are subjected to individual analysis. According to the features, the blocks are transformed by the selected representation into an object/groups of objects. Groups for transmission in the load are tagged, have different coding severity (depth), depending on the risk assessment. Groups are transmitted through the network in different ways (paths) – VPN (different ESP), unencrypted tunnel, open access, etc. This solution improves the throughput of malicious load analysis prior to transmission. The performance overhead for encoding/decoding the load and encapsulating/de-encapsulating during transmission is reduced. The transmission bandwidth is increased.
  • Ескіз
    Документ
    Development of a protocol for a closed mobile Internet channel based on post-quantum algorithms
    (Харківський національний університет Повітряних Сил ім. Івана Кожедуба, 2021) Yevseiev, S. P.; Pohasii, Serhii; Khvostenko, Vladyslav
    The development of computing technologies has made it possible not only to expand the range of mobile communication services, but also to significantly increase computing capabilities. The emergence of mobile Internet, 4G, 5G technologies makes it possible to talk about a fundamentally different approach to ensuring the quality of service to network customers, creating fundamentally new approaches to ensuring the efficiency and reliability of transmitted information flows. However, such a rapid growth of GSM technologies without the introduction of security services leads to active actions of attackers and cyber terrorists, the emergence of new and modification of known threats. Mobile communication channels are used by cybercriminals for selfish purposes of access to database resources not only of the mobile Internet, but also to the databases of information and communication systems and networks. The article proposes a fundamentally new approach to ensuring the closure of the voice channel of the mobile Internet based on post-quantum cryptography algorithms – McEliece and Niederreiter crypto-code constructions on elliptic codes. This approach provides not only the offline mode of closing the voice channel and creating a VPN channel in tunnel mode, but also the required level of cryptographic strength in the face of the emergence of full-scale quantum computers.