Laboratories | 海角社区 Kharkiv National University of Radio Electronics Wed, 26 Nov 2025 15:33:18 +0000 en-GB hourly 1 Scientific-research part (SRP) /en/branch/scientific-research-part-srp Fri, 30 Mar 2018 14:53:23 +0000 http://185.69.152.83/?post_type=branch&p=6094 The Scientific-research part performs: planning and organizing fundamental, applied research and development activities; scientific cooperation in the framework of national and international scientific and technical programs; financial and logistical support for research and development; accounting and analysis of the created scientific and technical products and the results of scientific activities and their promotion in the […]

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The Scientific-research part performs:

  • planning and organizing fundamental, applied research and development activities;
  • scientific cooperation in the framework of national and international scientific and technical programs;
  • financial and logistical support for research and development;
  • accounting and analysis of the created scientific and technical products and the results of scientific activities and their promotion in the information space with a view to further implementation in relevant sectors of the national economy and commercialization on the national and world markets.

Priority directions of the organization scientific activity:

  • Preparation of scientific and pedagogical staff of the highest category (doctors and candidates of science), in order to ensure the quality of the student learning process and the ability of the university to make a significant contribution to solving problems in the priority scientific areas of Ukraine.
  • Distribution of the active presence of the university in the international scientific environment.
  • Expansion of the university鈥檚 participation in research and development for the military sector of the economy of Ukraine (laser and optoelectronic equipment, radio-electronic systems, telecommunications and communications).
  • Improving conditions for ensuring the quality of research and development for the military sector of the economy of Ukraine, and for solving modern scientific problems (creating a laboratory of defense technologies, creating a research center for sharing, restoring infrastructure and reprofiling the Multi-Purpose Geophysical Complex)
  • Formation of innovative projects and scientific and technical development of market demand based on the results of the implementation of state budgetary research.
  • Comprehensive support for innovative initiatives that arise in the scientific community of K海角社区 (start-up competitions, departmental initiatives, student initiatives). Commercialization of the results of scientific activity. Systematic promotion of the results of scientific research in the Ukrainian and European markets by means of marketing.
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PNDL “Information Technologies Transfer for Risk Reduction Systems” /en/branch/pndl-information-technologies-transfer-for-risk-reduction-systems Wed, 04 Apr 2018 12:35:52 +0000 http://185.69.152.83/?post_type=branch&p=7978 The main directions of the research: Development of an object-oriented methodology for the development of a specialized information and analytical system and its components based on knowledge of precedents. Development of a generalized method for modeling a problem situation. Development of a method for finding precedents, used for creating a knowledge base from the texts […]

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The main directions of the research:

  1. Development of an object-oriented methodology for the development of a specialized information and analytical system and its components based on knowledge of precedents.
  2. Development of a generalized method for modeling a problem situation.
  3. Development of a method for finding precedents, used for creating a knowledge base from the texts of the situation description by experts, which uses the object-oriented frame structure of the knowledge base organization in the tools of method implementation.
  4. Development of the nature environment model on the basis of a comprehensive knowledge-oriented presentation of the micro situation.

Quantitative indicators of the results of scientific work:

  1. 2008-2013 Research work was carried out for the BOCH laboratory (Dresden, Germany). 3 layout was transferred to the customer for exam. (Volume – 9 thousand euros).
  2. 2013-2015 theme 鈩 272-1 “Models and methods of analysis and interpretation of dynamic processes”, section “Models and methods of analysis of dynamic processes of emergency situations of a natural disposition” is completed.
  3. The laboratory took part in international programs: TEMPUS, ERASMUS +, DAAD
  4. 8 candidate dissertations and 1 doctoral thesis are protected.
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Educational and scientific laboratory of Reconfigurable and Mobile Systems /en/branch/educational-and-scientific-laboratory-of-reconfigurable-and-mobile-systems Sun, 26 Dec 2021 14:20:49 +0000 /?post_type=branch&p=101077 The Laboratory of Reconfigurable and Mobile Systems of the Department of Electronic Computers was established in 2017 to train highly qualified specialists in the specialty 123 鈥淐omputer Engineering鈥, as well as highly qualified personnel, attracting the target audience of applicants, research, development and popularization. technical creativity of youth, carrying out specialized laboratory works. The main […]

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The Laboratory of Reconfigurable and Mobile Systems of the Department of Electronic Computers was established in 2017 to train highly qualified specialists in the specialty 123 鈥淐omputer Engineering鈥, as well as highly qualified personnel, attracting the target audience of applicants, research, development and popularization. technical creativity of youth, carrying out specialized laboratory works.

The main tasks

  • development of new courses of academic disciplines on the technological basis of the laboratory and conducting laboratory and practical classes of the bachelor鈥檚 and master鈥檚 cycle of preparation of full-time and part-time forms of education;
  • conducting fundamental and applied research;
  • international scientific and technical cooperation through participation in joint scientific programs and projects.

Educational process

On the basis of the educational and scientific laboratory, classes are held for full-time and part-time students. In particular, in such disciplines:

  • fundamentals of computer calculations (laboratory and practical classes);
  • Embedded System programming (laboratory classes);
  • Embedded System (laboratory classes);
  • database management systems (laboratory classes);
  • computer architecture (laboratory classes);
  • software for overlay computer networks (laboratory and practical classes);
  • computing systems and networks (lectures);
  • computer logic (laboratory classes).

The laboratory hosts meetings of the Examination Commissions for the defense of qualification works on the educational-professional and educational-scientific program 鈥淪ystem Programming鈥 for the preparation of masters.

Scientific activity

Scientific directions of the laboratory

  • models and methods of increasing the survivability of distributed computer systems with reconfigurable structure and programmable logic in conditions of external influence; algorithms for spatial intelligence to control a swarm of intelligent mobile objects (V. Tokariev);
  • cyber security of universal computer systems (I. Ruban);
  • methods and means of digital image processing in mobile systems (I. Ruban);
  • computer networks with increased survivability (V. Tkachov).

Main scientific results

In 2017, within the framework of the research laboratory carried out by scientists 鈥淐reation of scientific and methodological foundations for ensuring the survivability of network information exchange systems under conditions of external influence of powerful microwave radiation鈥 (No. SR 0117U003916), the problem of mathematical modeling was formulated on the basis of a self-consistent system of equations modeling the process of influence powerful electromagnetic field on semiconductor elements, taking into account their topology. An experimental setup has been developed for testing the effect of an electromagnetic field on a semiconductor element of information and switching systems. Methods for compressing microwave electromagnetic field pulses to obtain ultrashort pulses with high peak power have been determined.

In 2018, within the framework of the research laboratory carried out by scientists 鈥淐reation of scientific and methodological foundations for ensuring the survivability of network information exchange systems under the external influence of powerful microwave radiation鈥 (No. SR 0118U000832). Developed functional circuits and hardware for monitoring the impact of electromagnetic energy. New methods of technical protection of semiconductor element base of information systems from the effects of electromagnetic energy are proposed. For a number of stationary and mobile technical objects, algorithms have been created to protect the reception, transmission and processing of information. A general concept of increasing the survivability of stationary and mobile information systems through effective algorithms for their protection has been developed.

Since 2017, the scientists of the laboratory have received two declarative patents for a utility model, published more than 50 scientific publications, including 20, which are indexed in the scientometric databases Scopus and WoS.

Scientific laboratories are members of the IEEE and ACM communities.

Student science

The scientific activity of students on the basis of the laboratory is carried out in accordance with the activities of the scientific circles 鈥淚ntelligent mobile systems鈥 and 鈥淧rogramming Embedded systems鈥. Supervisor: Assoc. Prof. Volodymyr Tokariev.

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Radio Astronomy Research Laboratory named B.L. Kashcheyev of Research Department /en/branch/scientific-research-part-srp/srp-structure/radio-astronomy-research-laboratory-named-b-l-kashcheyev-of-research-department Mon, 16 Apr 2018 09:08:58 +0000 http://185.69.152.83/?post_type=branch&p=11442 It was named after BL Kashcheyev (1920-2004), the well-known researcher of meteor by the radio method, under the direction of听which for the first time in Ukraine were recorded radio meteors (1954), was based the meteor radar research with their development in astronomical direction to the level of world significance, in particular, a meteor automated radar […]

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It was named after BL Kashcheyev (1920-2004), the well-known researcher of meteor by the radio method, under the direction of听which for the first time in Ukraine were recorded radio meteors (1954), was based the meteor radar research with their development in astronomical direction to the level of world significance, in particular, a meteor automated radar system was created and unique observational astronomical data of a large volume were obtained.

The International Astronomical Union assigned the names of Kashcheyev, KhTURE, and Voloshchuk for three small planets.

LAB was created in 2007 with the purpose of further development of scientific research at the university in the field of radio astronomy (with an emphasis on meteor radar research), a combination of the educational process with scientific research, engaging students in research, further development of fundamental and applied sciences, study and observation of meteors in the Earth’s atmosphere and meteoroids in the Solar system (planetary systems) by radio engineering and other means, solving modern problems of astronomy, radio astronomy, astroinformatics with the help of radio engineering and information technology.

In the field of international cooperation (astronomy is the most international science), the task is to exchange experience and cooperate with foreign countries through participation in international projects, work and internships in foreign research organizations etc. and by participating in the work of scientific meetings with the purpose of obtaining, distributing听and analyzing information and improving the level of research and development, professional level of scientific and teaching staff of university, graduate students and students.

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Research and Development Center of Integrated Information Radio Electronic Systems and Technologies (RDC IIREST) /en/branch/scientific-research-part-srp/srp-structure/research-and-development-center-of-integrated-information-radio-electronic-systems-and-technologies-rdc-iirest Tue, 31 Jul 2018 14:25:33 +0000 http://nure.ua/?post_type=branch&p=24276 The Research and Development Center of Integrated Information Radio Electronic Systems and Technologies (RDC IIREST) 鈥嬧媔s a structural subdivision of the SRP. RDC IIREST was established by order No. 89 (April 13, 2005) with the aim of more efficient use of human, financial and material and technical resources for the development of promising radio-electronic systems […]

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The Research and Development Center of Integrated Information Radio Electronic Systems and Technologies (RDC IIREST) 鈥嬧媔s a structural subdivision of the SRP. RDC IIREST was established by order No. 89 (April 13, 2005) with the aim of more efficient use of human, financial and material and technical resources for the development of promising radio-electronic systems and technologies, scientific support for the training of specialists in this area, as well as for the development of new technologies in the field of alternative energy and energy conservation based on the use of the effects of electromagnetic fields and cavitation on substances, implementation and commercialization.


Tasks

  • in the scientific field, the main tasks of the Center are to carry out research and development work in the areas of activity of the laboratories that are part of the Center;
  • assistance in improving the scientific component of the educational process by attracting students and graduate students to the work carried out by the Center and using the results obtained in the educational process;
  • participation in the training of highly qualified scientific personnel – doctors and candidates of science;
  • participation in advertising and marketing work in order to implement the obtained scientific results. Information support of the center page on the university website;
  • participation in the organization of scientific and technical forums, conferences, seminars in the scientific areas of the Center, held by the university, as well as organizing and supporting the participation of the Center’s employees in the work of scientific and technical forums, conferences, seminars, including international ones;
  • preparation and publication of scientific publications, as well as together with the departments of teaching aids, exhibits for exhibitions.

Functions

  • conducting scientific research on theoretical and scientific and technical problems in scientific areas of the Research Center IIREST on the basis of budgetary, contractual and grant funding;
  • attraction of scientific and pedagogical workers of the departments of K海角社区, graduate students and students to participate in scientific research of the Center;
  • discussion of completed research projects, formation of scientific and technical reports;
  • assistance in the acquisition of knowledge and experience by the applicant for a scientific degree in the development and
  • implementation of research methodology and research to obtain scientific results that provide a solution to an important theoretical or applied problem;
  • assistance in organizing scientific forums, conferences and seminars;
  • creation and registration of objects of intellectual property;
  • development of business proposals, establishment of business contacts with potential consumers of scientific and scientific and technical products;
  • creation of joint structures with other organizations for the implementation of research results into practical application;
  • participation in the development and implementation of state target programs in conjunction with other institutions of higher education, scientific institutions and national sectoral scientific institutions; conducting joint scientific research, experimental and innovative developments;
  • introduction of created innovative products.

Scientific schools

  • Statistical theory of antennas (until 2019: Shyfrin Yakiv, Doctor of Technical Sciences, Professor, Honored Worker of Science and Technology of Ukraine);
  • Adaptive spatio-temporal processing of signals against background noise on the basis of adaptive grating filters(until 2019: Lekhovytsky Davyd, Doctor of Technical Sciences, Professor);
  • GNSS technologies for precise positioning and navigation. The head – Candidate of Technical Sciences Zhalilo Olexiy Alexandrovich.
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Educational and scientific laboratory of intelligent hardware and software systems (IHSS) /en/branch/educational-and-scientific-laboratory-of-intelligent-hardware-and-software-systems-ihss Mon, 14 May 2018 09:10:48 +0000 http://nure.ua/?post_type=branch&p=17828 Objective: To study modern intellectual methods, models and tools for creating software and hardware systems with intelligent functions. Areas of research intelligent systems for identifying the structure and patterns in the data; development of intellectual software and hardware systems the use of fuzzy methods for parallel processing of data. Staff Andriy Yerokhin, Head of Educational […]

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Objective: To study modern intellectual methods, models and tools for creating software and hardware systems with intelligent functions.

Areas of research

  • intelligent systems for identifying the structure and patterns in the data;
  • development of intellectual software and hardware systems
  • the use of fuzzy methods for parallel processing of data.

Staff


Relationship with the educational process

  • 袨.袙. 袪褟斜懈褕械胁(褋褌. 谐褉褍锌懈 袉袩袟蟹写屑-19-1), 袗.袥. 袆褉芯褏褨薪, 袗.袚. 袘邪褏屑械褌 (袟写芯斜褍胁邪褔 芯褋胁褨褌懈 蟹邪 3-屑 芯褋胁褨褌薪褜芯-薪邪褍泻芯胁懈屑 褉褨胁薪械屑). 袗薪邪谢褨蟹 褌芯薪邪谢褜薪芯褋褌褨 褌械泻褋褌褍 褍泻褉邪褩薪褋褜泻芯褞 屑芯胁芯褞: 听袘褨芯薪褨泻邪 褨薪褌械谢械泻褌褍. 2021. No 1 (96). 小. 15鈥21. (袉袩袟蟹写屑-19-1)
  • 袙.袨. 袧械褔褨锌芯褉 (褋褌. 谐褉褍锌懈 袉袩袟蟹写屑-19-1), 袗.袥. 袆褉芯褏褨薪. 袦芯写懈褎褨泻邪褑褨褟 屑械褌芯写邪 泻谢邪褋懈褎褨泻邪褑褨褩 袘邪泄褦褋邪 写谢褟 蟹邪写邪褔褨 胁懈褟胁谢械薪薪褟 褋锌邪屑褍 褍泻褉邪褩薪褋褜泻芯褞 屑芯胁芯褞: 听袘褨芯薪褨泻邪 褨薪褌械谢械泻褌褍. 2021. No 1 (96).

Students took part in an experiment to train neural networks for computer vision systems.听The analysis of bio-identification problems is used in teaching the discipline “Security of programs and data” in the topic “Systems of biometric identification.


Main scientific achievements for the reporting period

Grant agreement for participation in the COST Action CA18231 project (). Title: Multi3Generation: Multi-task, Multilingual, Multi-modal Language Generation. Project management is carried out in accordance with the norms of international law and the rules of the COST Association project.


谤辞辞尘听128袗

Laboratory page: /en/department/department-of-software-engineering/department-s-laboratory/educational-and-scientific-laboratory-of-intelligent-hardware-and-software-systems-ihss

Web-site:

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Control Systems Research Laboratory /en/branch/scientific-research-part-srp/srp-structure/control-systems-research-laboratory Fri, 16 Mar 2018 18:38:20 +0000 http://185.69.152.83/?post_type=branch&p=2673 Control Systems Research Laboratory (CSRL) has been founded according to the Resolution of the Council of Ministers of the Ukrainian SSR 鈩 587 from 18.12.1973 and the Order of the rector of KhIRE 鈩44 from 03.04.1974. CSRL functions as a structural subdivision of the R&D department of the university. The scientific direction of the laboratory […]

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Control Systems Research Laboratory (CSRL) has been founded according to the Resolution of the Council of Ministers of the Ukrainian SSR 鈩 587 from 18.12.1973 and the Order of the rector of KhIRE 鈩44 from 03.04.1974. CSRL functions as a structural subdivision of the R&D department of the university.

The scientific direction of the laboratory is hybrid systems of computational intelligence for data analysis, information processing and control.

Areas of research

  • development of artificial neural networks with variable structure;
  • data mining;
  • big data processing;
  • evolutionary neural-phase networks;
  • neo-fuzzy systems;
  • wavelet neural networks;
  • deep neuro-neo-phase systems;
  • neuromathematics and neuromorphic engineering.

Since 1985, under the guidance of prof. Yevgeniy Bodyanskiy, a number of state budgetary fundamental R&D projects are being carried out, including those that were established according to the decisions of the State Committee for Science and Technology of the USSR and the Ministry of Higher Education of the USSR as parts of the targeted integrated and scientific and technical programs and according to the orders of the Ministry of Education and Science of Ukraine based on the results of the competitive selection of projects.

CSRL conducts research in close contact with departments and divisions of the university. Teaching staff, doctoral students, PhD students and part-time students take part in research.

As a part of complex interdepartmental R&D projects, a number of doctoral and candidate theses were prepared by PhD students and doctoral students of the Artificial Intelligence Department and scientific staff of the CSRL.

A complex of fundamental researches aimed at creating theoretical positions, models, methods, architectures, learning algorithms for new online hybrid systems of computational intelligence designed to solve a wide class of online Data Mining tasks connected with high-dimensional and high-volume data processing using the latest achievements in this field: Data Science, Data Stream, Evolving Systems, Advanced Fuzzy Clustering, High-Dimensional Clustering.


Current tasks

  • development of a deep multilayer hybrid computational intelligence system based on neophase of neurons as nodes and speed-optimized methods for their training based on back propagation of errors;
  • development of a deep modular convex hybrid computational intelligence system based on multidimensional non-phase layers and speed-optimized training methods;
  • development of a 2D-neo-fuzzy hybrid computational intelligence system for processing matrix signals (images) and speed-optimized teaching methods.

Educational process

The lecture courses “Artificial Neural Networks”, “Neural Network Methods of Computational Intelligence”, “Deep Learning of Neural Networks”, “Deep Learning in Hybrid Computational Intelligence Systems”, “Neuro-fuzzy Systems and Evolutionary Algorithms” are being updated for students of the specialty 122 Computer Science.

Within the framework of scientific research, doctoral students, postgraduates, masters, bachelors are trained on the following topics: the development of architectures, new neurons, methods of teaching-self-learning of multilayer (deep) neuro-neo-fuzzy systems, including stack, cascade, recurrent and ensemble for solving Stream Mining problems , Big Data Mining and their application in practice.

In recent years, the following dissertations have been defended within the framework of fundamental research:

  • for the degree of Doctor of Technical Sciences:
  1. 袦邪褋褕褌邪谢懈褉 小. 袙. 袦芯写械谢懈 懈 屑械褌芯写褘 褌械屑锌芯褉邪谢褜薪芯泄 芯斜褉邪斜芯褌泻懈 胁懈写械芯 写谢褟 懈薪褎芯褉屑邪褑懈芯薪薪芯谐芯 锌芯懈褋泻邪, 05.13.06 鈥 懈薪褎芯褉屑邪褑懈芯薪薪褘械 褌械褏薪芯谢芯谐懈懈, 薪邪褍褔薪褘泄 泻芯薪褋褍谢褜褌邪薪褌 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝. 袙., 2016, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  2. 袩械褉芯胁邪 袠. 袚. 袠薪褎芯褉屑邪褑懈芯薪薪邪褟 褌械褏薪芯谢芯谐懈褟 邪薪邪谢懈蟹邪 屑械写懈褑懈薪褋泻懈褏 写邪薪薪褘褏 薪邪 芯褋薪芯胁械 谐懈斜褉懈写薪褘褏 薪械泄褉芯褎邪蟹蟹懈 褋懈褋褌械屑, 05.13.09 鈥 屑械写懈褑懈薪褋泻邪褟 懈 斜懈芯谢芯谐懈褔械褋泻邪褟 懈薪褎芯褉屑邪褌懈泻邪 懈 泻懈斜械褉薪械褌懈泻邪, 薪邪褍褔薪褘泄 泻芯薪褋褍谢褜褌邪薪褌 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝.袙., 2019 谐. 袣懈械胁, 袦械卸写褍薪邪褉芯写薪褘泄 薪邪褍褔薪芯-褍褔械斜薪褘泄 褑械薪褌褉 懈薪褎芯褉屑邪褑懈芯薪薪褘褏 褌械褏薪芯谢芯谐懈泄 懈 褋懈褋褌械屑.
  • for the degree of candidate of technical sciences:
  1. 楔邪褎褉芯薪械薪泻芯 袗. 挟. 袦械褌芯写褘 写懈薪邪屑懈褔械褋泻芯谐芯 懈薪褌械谢谢械泻褌褍邪谢褜薪芯谐芯 邪薪邪谢懈蟹邪 写邪薪薪褘褏 褋 锌褉芯斜械谢邪屑懈, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪, 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝. 袙., 2014, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  2. 袗写邪锌褌懈胁薪芯械 芯斜褍褔械薪懈械 褝胁芯谢褞褑懈芯薪薪褘屑 薪械泄褉芯-褎邪蟹蟹懈 褋懈褋褌械屑 褋 褟写械褉薪褘屑懈 褎褍薪泻褑懈褟屑懈 邪泻褌懈胁邪褑懈懈 胁 蟹邪写邪褔邪褏 懈薪褌械谢谢械泻褌褍邪谢褜薪芯谐芯 邪薪邪谢懈蟹邪 写邪薪薪褘褏, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝. 袙., 2014, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  3. 楔泻褍褉芯 袣. 袨. 袦械褌芯写褘 芯斜褍褔械薪懈褟 薪械泄褉芯褎邪蟹蟹懈 褋械褌械泄 褋芯 褋锌械褑懈邪谢懈蟹懈褉芯胁邪薪薪褘屑懈 邪褉褏懈褌械泻褌褍褉邪屑懈, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪, 褋.薪.褋. 袩芯锌芯胁 小. 袙., 2014, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  4. 袣芯谢褔懈谐懈薪 袘. 袙. 袗写邪锌褌懈胁薪褘械 薪械泄褉芯褎邪蟹蟹懈 褋懈褋褌械屑褘 写谢褟 薪械褔械褌泻芯谐芯 泻谢邪褋褌械褉薪芯谐芯 邪薪邪谢懈蟹邪 胁 褍褋谢芯胁懈褟褏 薪械芯锌褉械写械谢械薪薪芯褋褌懈, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪, 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝. 袙., 2014, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  5. 袣芯锌邪谢懈邪薪懈 袛. 小. 协胁芯谢褞褑懈芯薪薪褘械 薪械泄褉芯褎邪蟹蟹懈 褋械褌懈 褋 泻邪褋泻邪写薪芯泄 褋褌褉褍泻褌褍褉芯泄 写谢褟 懈薪褌械谢谢械泻褌褍邪谢褜薪芯谐芯 邪薪邪谢懈蟹邪 写邪薪薪褘褏, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝. 袙., 2016, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  6. 袘芯泄泻芯 袗. 袗. 协胁芯谢褞褑懈芯薪薪褘械 薪械泄褉芯褎邪蟹蟹懈 褋懈褋褌械屑褘 胁 蟹邪写邪褔邪褏 懈薪褌械谢谢械泻褌褍邪谢褜薪芯谐芯 邪薪邪谢懈蟹邪 写邪薪薪褘褏, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝.袙., 2017, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  7. 小邪屑懈褌芯胁邪 袙. 袗. 袣谢邪褋褋懈褎懈泻邪褑懈褟 懈 泻谢邪褋褌械褉懈蟹邪褑懈褟 写邪薪薪褘褏, 蟹邪写邪薪薪褘褏 胁 薪械褔懈褋谢芯胁褘褏 褕泻邪谢邪褏, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝.袙., 2017, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  8. 啸邪褍褋褌芯胁邪 (袣褍褑械薪泻芯) 携.袙. 袦械褌芯写褘 薪械褔械褌泻芯泄 泻谢邪褋褌械褉懈蟹邪褑懈懈 薪邪 芯褋薪芯胁械 褟写械褉薪褘褏 褎褍薪泻褑懈泄 胁 蟹邪写邪褔邪褏 懈薪褌械谢谢械泻褌褍邪谢褜薪芯谐芯 邪薪邪谢懈蟹邪 写邪薪薪褘褏, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝.袙., 2017, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  9. 袣芯斜褘谢懈薪 袠. 袗. 袧械褔械褌泻邪褟 泻谢邪褋褌械褉懈蟹邪褑懈褟 胁褉械屑械薪薪褘褏 褉褟写芯胁 胁 懈薪褌械谢谢械泻褌褍邪谢褜薪芯屑 邪薪邪谢懈蟹械 锌芯褌芯泻芯胁 写邪薪薪褘褏, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝.袙., 2019, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  10. 袞械褉薪芯胁邪 袩. 袝. 袧械褔械褌泻邪褟 泻谢邪褋褌械褉懈蟹邪褑懈褟 锌芯褌芯泻芯胁 写邪薪薪褘褏 锌褉懈 薪械懈蟹胁械褋褌薪芯屑 泻芯谢懈褔械褋褌胁械 泻谢邪褋褌械褉芯胁, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝.袙., 2019, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协;
  11. 袙谢邪褋械薪泻芯 袝.袦. 袦械褌芯写褘 懈 屑芯写械谢懈 懈薪褌械谢谢械泻褌褍邪谢懈蟹邪褑懈懈 锌褉芯褑械褋褋芯胁 芯锌械褉邪褌懈胁薪芯谐芯 邪薪邪谢懈蟹邪 褉懈褋泻芯胁 薪邪 芯褋薪芯胁械 屑褟谐泻懈褏 胁褘褔懈褋谢械薪懈泄, 05.13.23 鈥 褋懈褋褌械屑褘 懈 褋褉械写褋褌胁邪 懈褋泻褍褋褋褌胁械薪薪芯谐芯 懈薪褌械谢谢械泻褌邪, 薪邪褍褔薪褘泄 褉褍泻芯胁芯写懈褌械谢褜 写.褌.薪., 锌褉芯褎. 袘芯写褟薪褋泻懈泄 袝.袙., 2021, 谐. 啸邪褉褜泻芯胁, 啸袧校袪协.

Major scientific achievements in recent years

Under the guidance of prof. Bodyansky E.V. at the PNIL ACS a number of research projects have been carried out, including in recent years, based on the results of the competitive selection of the Ministry of Education and Science of Ukraine, 6 fundamental complex interdepartmental state budget research projects have been carried out:

  1. 芦袠薪褌械谢谢械泻褌褍邪谢褜薪褘泄 邪薪邪谢懈蟹 懈 芯斜褉邪斜芯褌泻邪 写邪薪薪褘褏 胁 褉械邪谢褜薪芯屑 胁褉械屑械薪懈 薪邪 芯褋薪芯胁械 褋褉械写褋褌胁 胁褘褔懈褋谢懈褌械谢褜薪芯谐芯 懈薪褌械谢谢械泻褌邪禄, 2004-2006 谐谐., 锌褉懈泻邪蟹 袦袨袧 校泻褉邪懈薪褘 鈩746 芯褌 07.11.2003 谐., 鈩 谐芯褋褉械谐懈褋褌褉邪褑懈懈 0104U003432;
  2. 芦小懈薪褌械蟹 屑械褌芯写芯胁 芯斜褉邪斜芯褌泻懈 懈薪褎芯褉屑邪褑懈懈 锌褉懈 薪械芯锌褉械写械谢械薪薪芯褋褌懈 薪邪 芯褋薪芯胁械 褋邪屑芯芯斜褍褔械薪懈褟 懈 屑褟谐泻懈褏 胁褘褔懈褋谢械薪懈泄禄, 2007-2009 谐谐., 锌褉懈泻邪蟹 袦袨袧 校泻褉邪懈薪褘 鈩732 芯褌 27.10.2006 谐., 鈩 谐芯褋褉械谐懈褋褌褉邪褑懈懈 0107U003028;
  3. 芦协胁芯谢褞褑懈芯薪薪褘械 谐懈斜褉懈写薪褘械 褋懈褋褌械屑褘 胁褘褔懈褋谢懈褌械谢褜薪芯谐芯 懈薪褌械谢谢械泻褌邪 褋 懈蟹屑械薪褟褞褖械泄褋褟 褋褌褉褍泻褌褍褉芯泄 写谢褟 懈薪褌械谢谢械泻褌褍邪谢褜薪芯谐芯 邪薪邪谢懈蟹邪 写邪薪薪褘褏禄, 2010-2012 谐谐., 锌褉懈泻邪蟹 袦袨袧 校泻褉邪懈薪褘 鈩686 芯褌 22.07.2009 谐., 鈩 谐芯褋褉械谐懈褋褌褉邪褑懈懈 0110U000458;
  4. 芦袧械泄褉芯-褎邪蟹蟹懈 褋懈褋褌械屑褘 写谢褟 褌械泻褍褖械泄 泻谢邪褋褌械褉懈蟹邪褑懈懈 懈 泻谢邪褋褋懈褎懈泻邪褑懈懈 锌芯褋谢械写芯胁邪褌械谢褜薪芯褋褌械泄 写邪薪薪褘褏 锌褉懈 懈褋泻褉懈胁谢械薪薪芯褋褌懈 芯褌褋褍褌褋褌胁褍褞褖懈屑懈 懈 邪薪芯屑邪谢褜薪褘屑懈 薪邪斜谢褞写械薪懈褟屑懈禄, 2013-2015 谐谐., 锌褉懈泻邪蟹 袦袨袧 校泻褉邪懈薪褘 鈩1193 芯褌 25.10.2012 谐., 鈩 谐芯褋褉械谐懈褋褌褉邪褑懈懈 0113U000361;
  5. 芦袛懈薪邪屑懈褔械褋泻懈泄 懈薪褌械谢谢械泻褌褍邪谢褜薪褘泄 邪薪邪谢懈蟹 锌芯褋谢械写芯胁邪褌械谢褜薪芯褋褌械泄 薪械褔械褌泻芯泄 懈薪褎芯褉屑邪褑懈懈 锌褉懈 褋褍褖械褋褌胁械薪薪芯泄 薪械芯锌褉械写械谢械薪薪芯褋褌懈 薪邪 芯褋薪芯胁械 谐懈斜褉懈写薪褘褏 褋懈褋褌械屑 胁褘褔懈褋谢懈褌械谢褜薪芯谐芯 懈薪褌械谢谢械泻褌邪禄, 2016-2018 谐谐., 锌褉懈泻邪蟹 袦袨袧 校泻褉邪懈薪褘 鈩158 芯褌 25.02.2016 谐., 鈩 谐芯褋褉械谐懈褋褌褉邪褑懈懈 0116U002539.
  6. 芦袚谢褍斜懈薪薪褘械 谐懈斜褉懈写薪褘械 褋懈褋褌械屑褘 胁褘褔懈褋谢懈褌械谢褜薪芯谐芯 懈薪褌械谢谢械泻褌邪 写谢褟 邪薪邪谢懈蟹邪 锌芯褌芯泻芯胁 写邪薪薪褘褏 懈 懈褏 斜褘褋褌褉芯械 芯斜褍褔械薪懈械禄, 2019-2021 谐谐., 锌褉懈泻邪蟹 袦袨袧 校泻褉邪懈薪褘 鈩1223 芯褌 09.11.2018 懈 鈩129 芯褌 05.02.2019, 鈩 谐芯褋褉械谐懈褋褌褉邪褑懈懈 0119U001403.

Based on the research results, a number of articles, sections of monographs, reports in the materials of international conferences have been published, of which more than 160 are indexed in the international scientific and metric databases Scopus and Web of Science. Including for the last 3 years: articles in journals indexed in the scientometric base Scopus – 7, articles in journals indexed in the scientometric base Web of Science – 3; English-language articles and abstracts of reports in the materials of international conferences, which are indexed in the scientometric base Scopus – 43; English-language articles and abstracts of reports in the materials of international conferences, which are indexed in the scientometric database Web of Science – 9; in journals included in the list of professional publications in Ukraine, as well as articles in foreign journals that are not indexed in Scopus or Web of Science – 7; monographs and chapters in collective monographs – 6.

R&D performers have received a number of grants and awards, including in recent years:

  • Commendation of the Prime Minister of Ukraine (Popov S., 2013);

  • Breastplate of the Ministry of Education and Science of Ukraine “Vasily Sukhomlinsky” (Bodyansky E., 2014);
  • Nominal scholarship of the Kharkiv Regional State Administration in the field of science in the nomination “Informatics and Computer Science” – scholarship to them. Sviridov V.V. for outstanding scientists (Bodyansky E., 2014);
  • Nominal scholarship of the Kharkiv Regional State Administration in the field of science in the nomination “Informatics and Computer Science” – scholarship to them. Sviridov V.V. for young scientists (Vinokurova O., 2014);
  • Grant for the implementation of scientific research on the basis of the order of the President of Ukraine “On the appointment of grants of the President of Ukraine to doctors of science for the implementation of scientific research for 2014” (Popov S., Order of the President of Ukraine No. 1038/214-rp);
  • Nominal scholarship of the Verkhovna Rada of Ukraine for talented young scientists (O. Vinokurova, Resolution of the Verkhovna Rada of Ukraine No. 689-VIII dated September 15, 2015);
  • Prize of the President of Ukraine for young scientists (Vinokurova E., Decree of the President of Ukraine No. 705/2015);
  • Gratitude to the Ministry of Education and Science of Ukraine (Popov S., 2015);
  • DAAD Grant (German Academic Exchange Service) “Scientific internships for university teachers and scientists”, Germany, Ostafalia (Tishchenko A., 2016);
  • Prize of the Verkhovna Rada of Ukraine for talented young scientists in the field of fundamental and applied research and scientific and technical developments (Perova I., Resolution of the Verkhovna Rada of Ukraine dated December 19, 2017 No. 2251-VIII);
  • International Visegrad Fund (IVF) Internship Scholarship (University of Ostrava, Czech Republic, 2017-2018);
  • Gratitude from the head of the Kharkiv Regional State Administration for a significant contribution to the development of domestic science, significant labor achievements, a high level of professional skill and on the occasion of the Day of Science (Bodyansky E., 2019).
  • Bodyansky E. became the winner of the competition “Higher School of Kharkiv – the best names” in the nomination “scientist” in 2019
  • Popov S. awarded with the Diploma of the Ministry of Education and Science for initiative and perseverance, high professionalism and active work on drafts of normative legal acts in the system of science and higher education of Ukraine.
  • Bodyansky E. became the winner of the competition “The best scientific and pedagogical worker of 海角社区 – 2019”.
  • Perova I. received a scholarship from the Cabinet of Ministers of Ukraine for young scientists in 2020.
  • Bodyansky E. became the winner of the competition “The best scientific and pedagogical worker of 海角社区 – 2020”.
  • Bodyansky E. appointed a scholarship of the Cabinet of Ministers of Ukraine for outstanding services in the field of higher education (2021)

Bodyansky E. and Popov S. have the honorary title of IEEE Senior Member.


Scientific seminars

Laboratory staff were co-organizers of the International Conference under the auspices of IEEE Data Stream Mining & Processing in 2016, 2018, 2020. In particular, E.V.Bodyanskiy. Honorary Co-Chair, O. A. Vinokurova Chairman of Publications and Finance.


Control Systems Research Laboratory Control Systems Research Laboratory Control Systems Research Laboratory Control Systems Research Laboratory Control Systems Research Laboratory Control Systems Research Laboratory Control Systems Research Laboratory Control Systems Research Laboratory

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Research laboratory “Photonics” /en/branch/research-laboratory-photonics Sat, 14 Apr 2018 10:01:01 +0000 http://185.69.152.83/?post_type=branch&p=11228 3The laboratory was established on June 26, 2002 as a scientific and educational laboratory for the development and implementation of promising optoelectronic and laser technologies in the scientific and educational process “Photonics”. Research directions laser information systems for telecommunication, military, medical and industrial purposes; quantum informatics and cryptography; chaotic information systems; topological photonics. Science and […]

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3The laboratory was established on June 26, 2002 as a scientific and educational laboratory for the development and implementation of promising optoelectronic and laser technologies in the scientific and educational process “Photonics”.


Research directions

  • laser information systems for telecommunication, military, medical and industrial purposes;
  • quantum informatics and cryptography;
  • chaotic information systems;
  • topological photonics.

Science and educational process

The research results are used in the provision of educational programs: engineering of optoinformation and laser systems, laser and optoelectronic technology, photonics and optoinformatics.

There is a student scientific group


Main scientific achievements

Since 2019, the laboratory has participated in the implementation of research work to create:

  • hidden optics search systems;
  • fiber optic gyroscope;
  • semiconductor targeting module.

Published 4 monographs, more than 30 publications in domestic and foreign publications. Doctoral and candidate’s dissertations were completed.

Current tasks: development of the theory and practice of topological photonics, principles of synchronization of chaotic systems, a number of optoelectronic systems.


Scientific seminars

  • laser information systems;
  • quantum computer science;
  • chaotic processes and dynamics;
  • topological photonics.


Research laboratory "Photonics" Research laboratory "Photonics" Research laboratory "Photonics" Research laboratory "Photonics" Research laboratory "Photonics" Research laboratory "Photonics" Research laboratory "Photonics" Research laboratory "Photonics"Research laboratory "Photonics" Research laboratory "Photonics"Research laboratory "Photonics" Research laboratory "Photonics"Research laboratory "Photonics" Research laboratory "Photonics" 听听Research laboratory "Photonics" Research laboratory "Photonics"

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Educational and research laboratory “Electronics-Orion” /en/branch/educational-and-research-laboratory-electronics-orion Sat, 14 Apr 2018 10:16:15 +0000 http://185.69.152.83/?post_type=branch&p=11240 Scientific and educational research laboratory (NUIL) “Elektronika-Orion” was created with the aim of combining the efforts of the teaching staff, researchers, doctoral students, graduate students, masters and students of the Department of Physical Education and Science of the Kharkiv National University of Radio Electronics of the Ministry of Education and Science of Ukraine and scientists […]

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Scientific and educational research laboratory (NUIL) “Elektronika-Orion” was created with the aim of combining the efforts of the teaching staff, researchers, doctoral students, graduate students, masters and students of the Department of Physical Education and Science of the Kharkiv National University of Radio Electronics of the Ministry of Education and Science of Ukraine and scientists of the (Kiev) for applied research aimed at creating new promising devices and devices in the microwave and optical range, including their mathematical modeling and design, as well as experimental prototyping of electronic products.


Research directions

  • computer modeling of physical processes in electronic devices in the microwave and terahertz ranges, the interaction of optical radiation with photonic crystal structures and metamaterials, including graphene-like ones;
  • the use of microwave energy in technological processes;
  • development of physical and technical foundations for creating a sulfur laser;
  • development of nonreciprocal photonic devices that form the basis for insulators, including topological ones;
  • development of specialized software for calculating and visualizing the characteristics of terahertz and optical devices;
  • application of microwave technologies in medicine and technology.

Science and educational process

All scientific directions of the laboratory are associated with educational programs that are taught at the Department of Physical and Electronic Engineering. First of all, this concerns the master’s educational programs: “Laser and Optoelectronic Engineering” and “Photonics and Optoinformatics”. The subject of master’s qualification works is related to the main scientific directions of the laboratory. The results of the work of undergraduates and bachelors are reported at the annual Forum “Radioelectronics and Youth in the XXI Century”, which is held in K海角社区, as well as at various scientific and technical conferences in Ukraine and abroad.


Publishing activity

Several chapters have been published in international monographs:

  1. A.A. Shmat’ko, V. N. Mizernik, E.N. Odarenko, V.T. Lysytsya, Dispersion Properties of TM and TE Modes of Gyrotropic Magnetophotonic Crystals // Chapter from the book 芦Theoretical Foundations and Application of Photonic Crystals禄. InTech., 2018. P. 47-69.
  2. Churyumov Gennadiy and Tetyana Frolova, 鈥淐hapter 5. Microwave Energy and Light Energy Transformation: Methods, Schemes and Designs,鈥 in Emerging Microwave Technologies in Industrial, Agricultural, Medical and Food Processing / Gennadiy Churyumov, Tetyana Frolova // Book edited by: Kok Yeow You, Ed. Rijeka: InTech, 2018, pp. 75-91.
  3. A.A. Shmat鈥檏o , V.N. Mizernik , E.N. Odarenko, A.S. Krivets , O.V. Yushchenko, Floquet-Bloch Theory for Semiconductor Bragg Structure // Microstructure and Properties of Micro- and Nanoscale Materials, Films, and Coatings. 鈥 2020. 鈥 Springer. – P. 51-59.
  4. A.A. Shmat鈥檏o, V.N. Mizernik, E.N. Odarenko Scattering of ElectromagneticWave By Bragg Reflector with Gyrotropic Layers. Advances in Information and Communication Technology and Systems. 鈥 2021. 鈥 Springer. 鈥 pp. 404-416.
  5. T. Frolova, V. Buts, G. Churyumov, E. Odarenko, V. Gerasimov Microwave Heating of Low-Temperature Plasma and Its Application. Microwave Heating – Electromagnetic Fields Causing Thermal and Non-Thermal Effects. Book edited by G. Churyumov. InTech., 2021. P. 110-134.

A number of articles have been published in journals included in the Scopus scientometric base. In particular, in the journals Quantum Electronics, Telecommunications and Radio Engineering, Progress in Electromagnetics Research, Journal of Electromagnetic Waves and Applications, IEEE Transactions on Electron Devices, IEEE Transactions on Plasma Science.

The scientific topics of the laboratory are also reflected in many theses of reports at international conferences of the IEEE Union:), AMPERE (Spaine).


Scientific seminars

On the basis of the laboratory, scientific seminars are held, the topics of which touch on topical problems of modern science and technology and refer to the main scientific directions of the laboratory. In particular, thematic seminars on the topic of modeling modified photonic-crystal and Breg waveguides (graduate student Sashkova Ya.V.), development of diffraction antennas (Prof. O. Vertiy), randomization of microwave radiation and its use for plasma heating (Prof. V. Buts), modeling the latest devices in the terahertz range (Doctor of Physical and Mathematical Sciences O. Kuleshov), development of gradient mirrors for terahertz lasers (prof. Ye. Odarenko), modern problems of a computational experiment and its implementation in microwave photonics (assoc. prof. T. Frolova).

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Interdepartmental Educational Scientific Laboratory “Non-destructive testing” /en/branch/interdepartmental-educational-scientific-laboratory-non-destructive-testing Tue, 14 Dec 2021 15:14:56 +0000 /?post_type=branch&p=100022 The laboratory was created in 2020 as a result of the merger of the educational and scientific center “Thermocontrol” of the Department of Physics and the laboratory of eddy current and optoelectronic methods of non-destructive testing of DOED Department. Laboratory purpose Conducting fundamental and applied scientific research in the field of non-destructive testing of high-tech […]

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The laboratory was created in 2020 as a result of the merger of the educational and scientific center “Thermocontrol” of the Department of Physics and the laboratory of eddy current and optoelectronic methods of non-destructive testing of DOED Department.


Laboratory purpose

Conducting fundamental and applied scientific research in the field of non-destructive testing of high-tech products and diagnostics of industrial equipment.


Research directions

  • development and improvement of technologies for non-destructive testing of vacuum-plasma coatings, remote monitoring of thermal processes of the formation of multilayer nano- and macrostructures;
  • improvement of technologies and tools for studying the quality of surfaces of complex geometry of critical mechanical engineering products (energy, transport, aviation);
  • development of energy-saving technologies in the direction of search and assessment of heat losses of industrial and residential facilities;
  • thermographic diagnostics and assessment of the residual life of industrial facilities;
  • training of specialists in the field of eddy current, thermal and optoelectronic non-destructive testing.

Educational process

The direction of laboratory research is closely related to the educational process of specialties 172, 173.


Main scientific achievements

Over the past year, the laboratory has been:

  • published three scientific genders in professional journals, for example the last article by prof. Chumakov V. “EXPEREMENTAL INVESTIGATION OF PULSE STERELIZATION OF PATHOGENS”, published in the USA on the preprint BioRxiv platform;
  • received a patent for invention No. 124366 “Method of navigation of an unmanned aerial vehicle with protection against interception of control and a system for its implementation”;
  • prepared and defended a PhD thesis on the topic “Colorimetric method and means for express quality control of grain crops” Efimenko S.;
  • laboratory staff took an active part in the 31st international symposium in Sozopol, Bulgaria.

Scientific seminars

On the basis of the laboratory, scientific seminars on non-destructive testing are regularly held, both for students and for graduate students.

 

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The Educational and Scientific Laboratory “Video Communication Technologies and Systems” (袝SL “VCTS”) /en/branch/the-educational-and-scientific-laboratory-video-communication-technologies-and-systems-esl-vcts Fri, 12 Sep 2025 12:44:41 +0000 /?post_type=branch&p=140096 The Educational and Scientific Laboratory “Video Communication Technologies and Systems” (袝SL “VCTS”) functions as an integration platform for interaction between specialized structural units of the University, ensuring synergy of efforts in the development and implementation of comprehensive solutions aimed at developing the video communications infrastructure at the University and promoting the development of the 海角社区 […]

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The Educational and Scientific Laboratory “Video Communication Technologies and Systems” (袝SL “VCTS”) functions as an integration platform for interaction between specialized structural units of the University, ensuring synergy of efforts in the development and implementation of comprehensive solutions aimed at developing the video communications infrastructure at the University and promoting the development of the 海角社区 media ecosystem.

The purpose of the 袝SL “VCTS” is to provide organizational, methodological, technical, and scientific and technological support for the educational process and scientific research at the University.

Educational tasks of the laboratory:

鈥 providing opportunities for video and multimedia support of the educational process at the University, in particular by creating, processing, storing and broadcasting video lectures, video seminars, educational presentations and other digital educational materials using the laboratory’s technical means;

鈥 participation in the implementation of elements of distance and blended learning, including technical and methodological support of video content for distance courses, as well as support for video communication processes between teachers and students using the laboratory’s technical means;

鈥 providing consultations, methodological recommendations and technical support for University employees on the use of video tools in educational activities;

鈥 support and support for holding open lectures, public presentations, career guidance events and mass educational events of the University using video recording, broadcasts and digital archiving using the laboratory’s technical means.

 

Scientific tasks of the laboratory:

鈥 initiation, organization and implementation of scientific research and development work in the field of video communication technologies;

鈥 creation of conditions for involving scientific, scientific and pedagogical workers, higher education students, doctoral students in interdisciplinary scientific research involving the use or development of video technologies;

鈥 implementation of scientific research results into the practice of the educational process, internal communication of the University and public presentation of scientific achievements;

鈥 participation in the preparation of scientific publications, presentations, multimedia and demonstration materials that accompany the scientific activities of the structural units of the University;

鈥 information, technical and expert support of scientific events, conferences, seminars, round tables held at the University, including providing video recording, online broadcasts and digital archiving of events using the technical means of the laboratory;

鈥 participation in project activities, grant initiatives and scientific partnerships within national and international programs that involve the application or development of video communication and other related technologies.

 

The general, legal, organizational and other principles of the laboratory’s functioning are determined by the Regulations on the Educational and Scientific Laboratory “Video Communication Technologies and Systems” of 海角社区.

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