Scientific and Research Laboratory of Radar Surveillance Systems (SRL RSS) was created with the aim of further development of the fundamental and applied investigations in the interests of both creation of perspective integrated information radioelectronic systems and scientific support for training specialists in this area.
The SRL RSS 聽is intended for carrying out research and development and experimental-design work in the following directions:
- The development of perspective methods, algorithms and means for radar.
- Adaptive space-time processing of signals embedded in interferences in different purpose radiolocation systems.
- Clutter, jamming and combined interference protection of different range radiolocation systems.
- 鈥淪uperresolving鈥 space-time spectral analysis.
- Direction finding of different origin radiation sources.
- Primary processing and measurements of meteorological signal parameters in Doppler meteoradars.
Current tasks
- development of mathematical models and methods for detecting radar signals scattered by acoustic vibrations created by UAVs;
- development of mathematical models of masking and simulating active interference: masking continuous aiming (narrow-band) active noise interference, masking continuous barrage (wide-band) active noise interference, simulating multiple corresponding impulse active interference, simulating pulse DRFM active noise of SMSP type, simulating pulse DRFM active interference type C&I; review of existing recognition methods;
- development of an algorithm for recognizing classes and types of active interference received at the input of the radar to detect UAVs: developing a method for mathematical modeling of the developed algorithm for recognizing and assessing the probability of correct recognition of the class and type of active interference; analysis of the probability of correct recognition of classes and types of active interference when using the developed recognition algorithm; development of a method for adaptive control of the operating modes of the UAV detection radar under the conditions of camouflage and / or simulating active interference based on the use of the results of recognition of classes and types of active interference
Main scientific achievements
Research works:
2015 – 2016 – in the framework of research on the state order “Development of noise-protected signal processing systems for a new generation of radars for airspace control and air traffic control” developed a prototype of adaptive digital space-time signal processing against the background of an additive mixture of masking noise and passive interference.
- 2017 – 2018 – R&D “Development of new information systems and technologies for radio monitoring, direction finding of radiation sources and determination of the orientation of moving objects” was performed.
- 2017 – 2018 – R&D “Development of systems for primary processing of radar and acoustic signals in the conditions of interference for radars and detectors of unmanned aerial vehicles” was performed.
- 2019 – 2020 – performed R&D “Development of a system for integrated processing of optical, infrared, acoustic and radar signals for the detection of unmanned aerial vehicles, determination of their coordinates and motion parameters.”
2021 – the 1st stage of R&D “Methods and means of detecting unmanned aerial vehicles of the system of protection of military and critical infrastructure”.
Articles in journals included in scientometric databases
- Shifrin Y.S., Dolzhikov V.V. Field statistics of the circular aperture antenna focused at the Fresnel zone. Part.1. Mean field characteristics // Telecommunications and Radio Engineering 2014. 鈥 V.73. 鈥 #17. 鈥 p. 1503鈥1531. DOI: 10.1615/TelecomRadEng.v73.i17.10
- Shifrin Y.S., Dolzhikov V.V. Field statistics of the circular aperture antenna focused at the Fresnel zone. Part.2. Fluctuation field characteristics // Telecommunications and Radio Engineering 2014. 鈥 V.73. 鈥 #18. 鈥 1615鈥1644. DOI: 10.1615/TelecomRadEng.v73.i18.30
- Shifrin Y.S., Dolzhikov V.V. Field statistics of the circular aperture antenna focused at the Fresnel zone. Part 3. Correlation Field Characteristics // Telecommunications and Radio Engineering 2015. 鈥 V.74 #2. 鈥 95鈥126. DOI: 10.1615/TelecomRadEng.v74.i2.10
- Lekhovytskiy D.I. Improvement of accuracy of meteorological objects velocity unambiguous measurement in Doppler weather radars with staggered pulse repetition times / D.I. Lekhovytskiy, D.V. Atamanskiy, D.S. Rachkov, A.V. Semeniaka // Radioelectronics and Communications Systems. 鈥 2015. 鈥 Vol. 58, No. 9. 鈥 PP. 385鈥403. DOI:聽聽聽 10.3103/S0735272715090010
- Lekhovytskiy D.I. Estimation of the energy spectrums of reflections in pulse Doppler weather radars. Part 1. Modifications of the spectral estimation algorithms聽 / D.I. Lekhovytskiy, D.V. Atamanskiy, D.S. Rachkov, A.V. Semeniaka // Radioelectronics and Communications Systems. 鈥 2015. 鈥 Vol. 58, No. 12. 鈥 PP. 523鈥550. DOI: 10.3103/S0735272715120018
- Lekhovytskiy D.I. Estimation of the energy spectrums of reflections in pulse Doppler weather radars. Part 2. Extreme performance / D.I. Lekhovytskiy, D.V. Atamanskiy, D.S. Rachkov, A.V. Semeniaka // Radioelectronics and Communications Systems. 鈥 2015. 鈥 Vol. 59. 鈥 No. 9. 鈥 PP. 379鈥396. . DOI: 10.3103/S0735272716090016
- Lekhovytskiy D.I. To the theory of adaptive signal processing in systems with centrally symmetric receive channels / D.I. Lekhovytskiy // Article submitted to 鈥淓URASIP Journal on Advances in Signal Processing鈥. 鈥 2016, No 33. DOI: 10.1186/s13634-016-0329-z
- Riabukha V.P. Errors in finding of direction of a target masked by noise radiations of external sources / V.P. Riabukha, A.V. Semeniaka, Rachkov D.S., Ye.A. Katiushyn // Radioelectronics and Communications Systems. 鈥 2016. 鈥 鈩 59 (6). 鈥 PP. 244鈥250. DOI: 10.3103/S0735272716060029
- Shifrin Y.S. Pioneer award: Statistical antenna theory: Formation and extension (2016) IEEE Aerospace and Electronic Systems Magazine. 鈥 2016. 鈥 Vol. 31, No. 8. 鈥 art. no. 7555204. 鈥 PP.聽 24鈥36. DOI: 10.1109/MAES.2016.160032
- Lekhovytskiy D.I. Estimation of the Energy Spectrums of Reflections in Pulse Doppler Weather Radars. Part 3. Statistical Analysis of the Reconstruction Techniques of Continuous Spectrums of the Reflections from Meteorological Objects / D.I. Lekhovytskiy, D.V. Atamanskiy, D.S. Rachkov, A.V. Semeniaka // Radioelectronics and Communications Systems. 鈥 2017. 鈥 Vol. 60, 鈩2. 鈥 PP. 47鈥79. DOI: 10.3103/S0735272717020017
- Lekhovytskiy D. I. Adaptive lattice filters for systems of space-time processing of non-stationary Gaussian processes / D. I. Lekhovytskiy // Radioelectronics and Communications Systems. 鈥 2018. 鈥 Vol. 61, 鈩11. 鈥 PP. 477鈥514. DOI: 10.3103/S0735272718110018
- Riabukha V. P. Estimation of potential efficiency of interperiod processing of coherent batch radio pulses against background of clutter in pulse-Doppler radars with medium frequency of probing / Riabukha V. P., Tsisarzh V. V., Katiushyn Ye. A., Zarytskyi V. I. // Radioelectronics and Communications Systems. 鈥 2018. 鈥 Vol. 61, 鈩 12. 鈥 PP. 529鈥546. DOI: 10.3103/S0735272718120014
- Lekhovytskiy D.I. Protection of coherent pulse radars against combined interferences. 1. Modifications of STSP systems and their ultimate performance capabilities / D.I. Lekhovytskiy, V.P. Riabukha, A.V. Semeniaka, D.V. Atamanskiy Ye.A. Katiushyn // Radioelectronics and Communications Systems. 鈥 2019. 鈥 Vol. 62, 鈩 7. 鈥 P. 311鈥341. DOI : https://www.doi.org/10.3103/S073527271907001X
- Riabukha V.P. Radar surveillance of unmanned aerial vehicles (review) / V.P. Riabukha // Radioelectronics and Communications Systems. 鈥 2020. 鈥 Vol. 63, 鈩 11. 鈥 P. 561鈥573. DOI : https://doi.org/10.3103/S0735272720110011
- Atamanskiy D. V. Width estimation of non-Gaussian Doppler velocity spectra of meteorological formations / D. V. Atamanskiy, A. V. Semeniaka, I. V. Krasnoshapka // Radioelectronics and Communications Systems. 鈥 2021. 鈥 Vol. 64, No. 1. 鈥 P. 1 鈥 13. DOI: https://doi.org/10.3103/S0735272721010015.聽
- Riabukha V. P. Mathematical models of cross-correlated and uncorrelated Gaussian noise jamming from external sources / V. P. Riabukha, A. V. Semeniaka, Ye. A. Katiushyn // Radioelectronics and Communications Systems. 鈥 2021. 鈥 Vol. 64, No. 3. 鈥 P. 147 鈥 154. DOI: https://doi.org/10.3103/S0735272721030043.
- Riabukha V. P. Selection of parameters for band-diagonal regularization of maximum likelihood estimates of Gaussian interference correlation matrices and their inverses / V. P. Riabukha, A. V. Semeniaka, Ye. A. Katiushyn, D. V. Atamanskiy // Radioelectronics and Communications Systems. 鈥 2021. 鈥 Vol. 64, No. 5. 鈥 P. 229 鈥 237. DOI: https://doi.org/10.3103/S0735272721050010. https://www.scopus.com/record/display.uri?eid=2-s2.0-85109716573&origin=resultslist&sort=
- Riabukha V. P. Analysis of protection efficiency of phased-array radars against the gaussian noise jamming / V. P. Riabukha, A. V. Semeniaka, Ye. A. Katiushyn // Telecommunications and Radio Engineering. 鈥 2021. 鈥 Vol. 80, No. 2. 鈥 P. 1 鈥 6. DOI: https://doi.org/10.1615/TelecomRadEng.2021036556. https://www.scopus.com/record/display.uri?eid=2-s2.0-85111134064&origin=resultslist
- Riabukha V. P. Analysis of protection efficiency of phased-array radars against the gaussian noise jamming / V. P. Riabukha, A. V. Semeniaka, Ye. A. Katiushyn // Telecommunications and Radio Engineering. 鈥 2021. 鈥 Vol. 80, No. 2. 鈥 P. 1 鈥 6. DOI: https://doi.org/10.1615/TelecomRadEng.2021036556. https://www.scopus.com/record/display.uri?eid=2-s2.0-85111134064&origin=resultslist
- Lekhovitskiy D. I. Lattice filtration theory. Part I. “One-dimensional” lattice filters / D. I. Lekhovitskiy, V. P. Riabukha, D. V. Atamanskiy, A. V. Semeniaka, D. S. Rachkov // Telecommunications and Radio Engineering. 鈥 2021. 鈥 Vol. 80, No. 5. 鈥 P. 41 鈥 79. DOI: https://doi.org/10.1615/TelecomRadEng.2021039186
- Lekhovitskiy D. I. Lattice filtration theory. Part II. “Two-dimensional” and “multidimensional” lattice filters / D. I. Lekhovitskiy, V. P. Riabukha, D. V. Atamanskiy, A. V. Semeniaka, D. S. Rachkov // Telecommunications and Radio Engineering. 鈥 2021. 鈥 Vol. 80, No. 6. 鈥 P. 55 鈥 72. DOI: https://doi.org/10.1615/TelecomRadEng.2021040594
Publications in conference proceedings included in scientometric databases
- Lekhovytskiy D.I. Quasioptimal algorithms for batch coherent signals interperiod processing against background clutter / D.I. Lekhovytskiy, D.S. Rachkov, A.V. Semeniaka, D.V. Atamanskiy, V.P. Riabukha // 15th International Radar Symposium IRS 2014, June 16 鈥 18, 2014: proceedings. 鈥 Gdansk, Poland, 2014. 鈥 PP. 25鈥30. DOI:聽聽聽 10.1109/IRS.2014.6869195
- Rachkov D.S. Lattice implementation of 鈥渟uperresolving鈥 methods for meteorological objects spectra estimation / D.S. Rachkov, D.I. Lekhovytskiy, A.V. Semeniaka, B.M. Vovshin, U.U. Laurukevich // 15th International Radar Symposium IRS 2014, June 16 鈥 18, 2014: proceedings. 鈥 Gdansk, Poland, 2014. 鈥 PP. 35鈥38. DOI: 10.1109/IRS.2014.6869229
- Rachkov D.S. Lattice-filter-based ground clutter canceller for pulse Doppler weather radar / D.S. Rachkov, D.I. Lekhovytskiy, A.V. Semeniaka, V.P. Riabukha, D.V. Atamanskiy // 15th International Radar Symposium IRS 2014, June 16 鈥 18, 2014: proceedings. 鈥 Gdansk, Poland, 2014. 鈥 PP. 215鈥219. DOI: 10.1109/IRS.2014.6869251
- Rachkov D.S. Statistical analysis of meteorological echoes mean power estimate / D.S. Rachkov, D.I. Lekhovytskiy, A.V. Semeniaka // Microwaves, Radar and Remote Sensing Symposium, September 23 鈥 25, 2014: proceedings. 鈥 Kyiv, Ukraine, 2014. 鈥 PP. 22鈥25. DOI: 10.1109/MRRS.2014.6956656
- Semeniaka A.V. The systolic design of two-dimensional and multidimensional lattice filters for space-time signal processing / A.V. Semeniaka, D.I. Lekhovytskiy, D.S. Rachkov // 11th European Radar Conference, October 8 鈥 10, 2014: proceedings. 鈥 Rome, Italy, 2014. 鈥 PP. 545鈥548. DOI: 10.1109/EuRAD.2014.6991328
- Semeniaka A.V. The systolic design of two-dimensional and multidimensional lattice filters for space-time signal processing / A.V. Semeniaka, D.I. Lekhovytskiy, D.S. Rachkov // 44th European Microwave Conference, EuMC 2014, December 15, 2014: proceedings. 鈥 Rome, Rome, 2014. 鈥 PP. 1848鈥1851. DOI: 10.1109/EuMC.2014.6986820
- Kornienko L.G., Shifrin Y.S. Polarization field structure of retrodirective antenna arrays with phase fluctuations of the orthogonal field components // 2015 International Conference on Antenna Theory and Techniques: Dedicated to 95 Year Jubilee of Prof. Yakov S. Shifrin, ICATT 2015 鈥 Proceedings. 鈥 Kharkiv, Ukraine, 2015. 鈥 PP. 78鈥80. DOI: 10.1109/ICATT.2015.7136786
- Lekhovytskiy D.I. Combining target detection against the background of jamming signals and jamming signal DOA estimation / D.I. Lekhovytskiy, D.V. Atamanskiy, V.P. Riabukha, D.S. Rachkov, A.V. Semeniaka // The 10th International Conference on Antenna Theory and Tech-niques ICATT-2015, April 21 鈥 24, 2015: proceedings. 鈥 Kharkiv, Ukraine. 鈥 PP. 36鈥40. DOI: 10.1109/ICATT.2015.7136777
- Riabukha V.P. Accuracy of target direction finding under action of external noise radiations in bidimensional adaptive arrays / V.P. Riabukha, A.V. Semeniaka, D.S. Rachkov, Ye.A. Katiushyn // The 10th International Conference on Antenna Theory and Techniques ICATT-2015, April 21 鈥 24, 2015: proceedings. 鈥 Kharkiv, Ukraine. 鈥 PP. 160鈥161. DOI:聽聽聽 10.1109/ICATT.2015.7136814
- Lekhovytskiy D.I. K – rank modification of adaptive lattice filter parameters / D.I. Lekhovytskiy, D.S. Rachkov, A.V. Semeniaka // The 2015 IEEE International Radar Confer-ence, May 10 鈥 15, 2015: proceedings. 鈥 Arlington, USA. 鈥 PP. 127鈥132. DOI: 10.1109/RADAR.2015.7130983
- Rachkov D.S. Lattice-filter-based unified structure of system for interperiod processing of weather radar signals / D.S. Rachkov, D.I. Lekhovytskiy // The 2015 IEEE International Radar Conference, May 10 鈥 15, 2015: proceedings. 鈥 Arlington, USA. 鈥 PP. 1234鈥1239. DOI: 10.1109/RADAR.2015.7131183
- Rachkov D.S. Statistical analysis of ground clutter and point targets impact on accuracy of weather echoes parameters estimation / D.S. Rachkov, D.I. Lekhovytskiy, A.V. Semeniaka, V.P. Riabukha // The 16th International Radar Symposium IRS 2015, June 24 鈥 26, 2015: proceed-ings. 鈥 Dresden, Germany. 鈥 PP. 604鈥609. DOI: 10.1109/IRS.2015.7226400
- Lekhovytskiy D.I. Statistical Analysis of Accuracy Estimation of the Continuous Energy Spectra in Pulse Doppler Weather Radars / D.I. Lekhovytskiy, A.V. Semeniaka, D.S., Rachkov // International Radar Symposium IRS-2017: int. conf., 28鈥30 June 2017: proc. 鈥 Prague, Czech Republic, 2017. 鈥 9 P. DOI: 10.23919/IRS.2017.8008175
- Riabukha V. P. Choice of Number, Structure and Placement of Compensation Modules in the Radar with Planar PAA / V. P. Riabukha, D. I. Lekhovytskiy, A. V. Semeniaka, E. A. Katyushin // International Conference on Antenna Theory and Techniques ICATT-2017: int. conf., 24鈥27 May 2017: proc. 鈥 Kyiv, Ukraine, 2017. 鈥 P. 197鈥198. DOI: 10.1109/ICATT.2017.7972620
- Riabukha V. P. An Exploratory Model of the Hardware-Software Unit for Adaptive Digital Time Signal Processing Against the Background of Masking Clutters A / V. P. Riabukha, D. I. Lekhovytskiy, A. V. Semeniaka, E. A. Katyushin // IEEE First Ukraine Conference on Electrical and Computer Engineering UKRCON-2017: int. conf., 29 May鈥02 June 2017: proc. 鈥 Kyiv, Ukraine, 2017. 鈥 P. 55鈥58. DOI: 10.1109/UKRCON.2017.8100458
- Riabukha V.P. Selection of The Number of Compensation Channels and Location of Receivers with Non-Identical Amplitude-Frequency and Phase-Frequency Responses in Adaptive Antenna Array under Noise Interference : Invited Paper / V.P. Riabukha, A.V. Semenyaka, E.A. Katyushin // IEEE Ukrainian Microwave Week (UkrMW-2020): int. conf., 21 鈥 25 Sept. 2020 : proc. 鈥 Kharkiv, Ukraine, 2020. 鈥 P. 7-10. DOI: 10.1109/UkrMW49653.2020.9252625
Articles in journals that are included in the list of scientific publications of Ukraine
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袙谢懈褟薪懈械 薪械芯褉褌芯谐芯薪邪谢褜薪芯褋褌懈 懈 褉邪蟹谢懈褔懈褟 泻芯褝褎褎懈褑懈械薪褌芯胁 褍褋懈谢械薪懈褟 泻胁邪写褉邪褌褍褉薪褘褏 锌芯写泻邪薪邪谢芯胁 薪邪 褝褎褎械泻褌懈胁薪芯褋褌褜 锌褉芯褋褌褉邪薪褋褌胁械薪薪芯泄 芯斜褉邪斜芯褌泻懈 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.小. 袪邪褔泻芯胁, 袗.袙. 小械屑械薪褟泻邪, 袛.袙. 袗褌邪屑邪薪褋泻懈泄 // 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪: 薪邪褍褔薪.-褌械褏薪. 卸褍褉薪邪谢. 鈥 2014. 鈥 孝. 13, 鈩 1. 鈥 小. 29鈥34.
- 小械屑械薪褟泻邪 袗.袙. 袙谢懈褟薪懈械 泻芯薪械褔薪芯泄 褉邪蟹褉褟写薪芯褋褌懈 褎邪蟹芯胁褉邪褖邪褌械谢械泄 薪邪 褝褎褎械泻褌懈胁薪芯褋褌褜 锌褉芯褋褌褉邪薪褋褌胁械薪薪芯泄 芯斜褉邪斜芯褌泻懈 / 袗.袙. 小械屑械薪褟泻邪, 袙.袩. 袪褟斜褍褏邪, 袛.小. 袪邪褔泻芯胁, 袛.袙. 袗褌邪屑邪薪褋泻懈泄 // 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪: 薪邪褍褔薪.-褌械褏薪. 卸褍褉薪邪谢. 鈥 2014. 鈥 孝. 13, 鈩 2. 鈥 小. 159鈥163.
- Lekhovytskiy D.I., Shifrin Y.S. Rapidly convergent 鈥渟uperresolving鈥 direction-of-arrival estima-tion of noise radiation sources in adaptive arrays // 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2015, 鈥 孝. 14, 鈩 1. 鈥 小. 7鈥23.
- 袣芯褉薪懈械薪泻芯 袥.袚., 楔懈褎褉懈薪 携.小., 小褌邪褌懈褋褌懈褔械褋泻懈泄 邪薪邪谢懈蟹 锌芯谢褟 褉械褌褉芯写懈褉械泻褌懈胁芯泄 邪薪褌械薪薪芯泄 褉械褕械褌泻懈 // 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2015, 鈥 孝. 14, 鈩 1. 鈥 小. 71鈥78.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袩芯胁褘褕械薪懈械 褌芯褔薪芯褋褌懈 芯写薪芯蟹薪邪褔薪芯谐芯 懈蟹屑械褉械薪懈褟 褋泻芯褉芯褋褌懈 屑械褌械芯芯斜褉邪蟹芯胁邪薪懈泄 胁 写芯锌谢械褉芯胁褋泻懈褏 屑械褌械芯褉邪写懈芯谢芯泻邪褌芯褉邪褏 褋 胁芯斜褍谢褟褑懈械泄 懈薪褌械褉胁邪谢芯胁 蟹芯薪写懈褉芯胁邪薪懈褟 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.袙. 袗褌邪屑邪薪褋泻懈泄, 袛.小. 袪邪褔泻芯胁, 袗.袙. 小械屑械薪褟泻邪 // 袠蟹胁械褋褌懈褟 胁褘褋褕懈褏 褍褔械斜薪褘褏 蟹邪胁械写械薪懈泄. 袪邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2015. 鈥 孝. 58, 鈩 9. 鈥 小. 3鈥22.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袨褑械薪泻邪 褝薪械褉谐械褌懈褔械褋泻懈褏 褋锌械泻褌褉芯胁 芯褌褉邪卸械薪懈泄 胁 懈屑锌褍谢褜褋薪褘褏 写芯锌谢械褉芯胁褋泻懈褏 屑械褌械芯褉邪写懈芯谢芯泻邪褌芯褉邪褏. 效邪褋褌褜 1. 袪邪蟹薪芯胁懈写薪芯褋褌懈 邪谢谐芯褉懈褌屑芯胁 褋锌械泻褌褉邪谢褜薪芯谐芯 芯褑械薪懈胁邪薪懈褟 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.袙. 袗褌邪屑邪薪褋泻懈泄, 袛.小. 袪邪褔泻芯胁, 袗.袙. 小械屑械薪褟泻邪 // 袠蟹胁械褋褌懈褟 胁褘褋褕懈褏 褍褔械斜薪褘褏 蟹邪胁械写械薪懈泄. 袪邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2015. 鈥 孝. 58, 鈩 12. 鈥 小. 3鈥30.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袨褑械薪泻邪 褝薪械褉谐械褌懈褔械褋泻懈褏 褋锌械泻褌褉芯胁 芯褌褉邪卸械薪懈泄 胁 懈屑锌褍谢褜褋薪褘褏 写芯锌谢械褉芯胁褋泻懈褏 屑械褌械芯褉邪写懈芯谢芯泻邪褌芯褉邪褏. 效. 3. 小褌邪褌懈褋褌懈褔械褋泻懈泄 邪薪邪谢懈蟹 屑械褌芯写芯胁 胁芯褋锌褉芯懈蟹胁械写械薪懈褟 薪械锌褉械褉褘胁薪褘褏 褋锌械泻褌褉芯胁 芯褌褉邪卸械薪懈泄 芯褌 屑械褌械芯芯斜褉邪蟹芯胁邪薪懈泄 / 袛. 袠. 袥械褏芯胁懈褑泻懈泄, 袛. 袙. 袗褌邪屑邪薪褋泻懈泄, 袛. 小. 袪邪褔泻芯胁, 袗. 袙. 小械屑械薪褟泻邪 // 袠蟹胁械褋褌懈褟 胁褍蟹芯胁. 芦袪邪写懈芯褝谢械泻褌褉芯薪懈泻邪禄. 鈥 2017. 鈥 孝. 60, 鈩 2. 鈥 小. 59鈥96.
- 袪褟斜褍褏邪 袙.袩. 袗写邪锌褌懈胁薪褘械 褋懈褋褌械屑褘 蟹邪褖懈褌褘 袪袥小 芯褌 褕褍屑芯胁褘褏 锌芯屑械褏. 4. 袙褘斜芯褉 泻芯谢懈褔械褋褌胁邪, 褋褌褉褍泻褌褍褉褘 懈 屑械褋褌芯褉邪褋锌芯谢芯卸械薪懈褟 泻芯屑锌械薪褋邪褑懈芯薪薪褘褏 屑芯写褍谢械泄 胁 袪袥小 褋 锌谢芯褋泻芯泄 肖袗袪 鈥 啸.: 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2017. 鈥 褌. 16, 鈩 1, 2 鈥 小. 3鈥12.
- 袪褟斜褍褏邪 袙.袩. 袗写邪锌褌懈胁薪褘械 褋懈褋褌械屑褘 蟹邪褖懈褌褘 袪袥小 芯褌 褕褍屑芯胁褘褏 锌芯屑械褏. 5. 袨锌褘褌薪褘泄 芯斜褉邪蟹械褑 褋懈褋褌械屑褘 锌芯屑械褏芯蟹邪褖懈褌褘 / 袙.袩. 袪褟斜褍褏邪, 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袗.袙. 小械屑械薪褟泻邪, 袝.袗.聽袣邪褌褞褕懈薪, 袙.袧. 袚褉懈褑械薪泻芯 // 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2017. 鈥 褌. 16, 鈩 3, 4 鈥 小. 95鈥102.
- 袪褟斜褍褏邪 袙. 袩. 袦芯写械谢褜 谐邪褍褋褋芯胁褘褏 褕褍屑芯胁褘褏 锌芯屑械褏 褋 薪械褉邪胁薪芯屑械褉薪褘屑 褔邪褋褌芯褌薪褘屑 褋锌械泻褌褉芯屑 懈 芯褑械薪泻邪 褝褎褎械泻褌懈胁薪芯褋褌懈 锌芯屑械褏芯蟹邪褖懈褌褘 / 袙. 袩.聽 袪褟斜褍褏邪, 袙. 袙. 笑懈褋邪褉卸, 袗. 袙.聽小械屑械薪褟泻邪, 袝. 袗 袣邪褌褞褕懈薪 // 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2018. 鈥 褌. 17, 鈩 1, 2. 鈥 小. 3鈥13.
- 袥械褏芯胁懈褑泻懈泄 袛. 袠. 袗写邪锌褌懈胁薪褘械 褉械褕械褌褔邪褌褘械 褎懈谢褜褌褉褘 写谢褟 褋懈褋褌械屑 锌褉芯褋褌褉邪薪褋褌胁械薪薪芯 鈥 胁褉械屑械薪薪芯泄 芯斜褉邪斜芯褌泻懈 薪械褋褌邪褑懈芯薪邪褉薪褘褏 谐邪褍褋褋芯胁褘褏 锌褉芯褑械褋褋芯胁 / 袛. 袠. 袥械褏芯胁懈褑泻懈泄 // 袠蟹胁械褋褌懈褟 胁褍蟹芯胁. 袪邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2018. 鈥 鈩 11. 鈥 小. 607鈥644.
- 袪褟斜褍褏邪 袙. 袩. 袨褑械薪泻邪 锌芯褌械薪褑懈邪谢褜薪芯泄 褝褎褎械泻褌懈胁薪芯褋褌懈 屑械卸锌械褉懈芯写薪芯泄 芯斜褉邪斜芯褌泻懈 泻芯谐械褉械薪褌薪芯泄 锌邪褔泻懈 褉邪写懈芯懈屑锌褍谢褜褋芯胁 薪邪 褎芯薪械 锌邪褋褋懈胁薪褘褏 锌芯屑械褏 胁 懈屑锌褍谢褜褋薪芯-写芯锌谢械褉芯胁褋泻懈褏 袪袥小 褋芯 褋褉械写薪械泄 褔邪褋褌芯褌芯泄 蟹芯薪写懈褉芯胁邪薪懈褟 / 袪褟斜褍褏邪 袙. 袩., 笑懈褋邪褉卸 袙. 袙., 袣邪褌褞褕懈薪 袝. 袗. 袟邪褉懈褑泻懈泄 袙. 袠. // 袠蟹胁械褋褌懈褟 胁褍蟹芯胁. 袪邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2018. 鈥 鈩 12. 鈥 小. 667鈥687.
- 袪褟斜褍褏邪 袙. 袩. 笑懈褎褉芯胁邪 邪写邪锌褌懈胁薪邪 褋懈褋褌械屑邪 蟹邪褏懈褋褌褍 褉邪写褨芯谢芯泻邪褌芯褉褨胁 胁褨写 屑邪褋泻褍胁邪谢褜薪懈褏 锌邪褋懈胁薪懈褏 蟹邪胁邪写 薪邪 芯褋薪芯胁褨 邪写邪锌褌懈胁薪芯谐芯 褉械褕褨褌褔邪褋褌芯谐芯 褎褨谢褜褌褉邪 / 袙.袩. 袪褟斜褍褏邪, 袗.袙. 小械屑械薪褟泻邪, 袆.袗. 袣邪褌褞褕懈薪, 袙.袉. 袟邪褉懈褑褜泻懈泄, 袨.袨. 袚芯谢芯胁褨薪 // 袨蟹斜褉芯褦薪薪褟 褌邪 胁褨泄褋褜泻芯胁邪 褌械褏薪褨泻邪. 鈥 2019. 鈥 孝.24 鈩 4. 鈥 小. 32鈥40. DOI : https://doi.org/1034169/2414-0651.2019.3(23).32-40
Publications in conference proceedings, abstracts and publications not included in the list of scientific publications of Ukraine
- 袪褟斜褍褏邪 袙.袩. 袨褕懈斜泻懈 锌械谢械薪谐邪褑懈懈 褑械谢懈, 屑邪褋泻懈褉褍械屑芯泄 褕褍屑芯胁褘屑懈 懈蟹谢褍褔械薪懈褟屑懈 胁薪械褕薪懈褏 懈褋褌芯褔薪懈泻芯胁 / 袙.袩. 袪褟斜褍褏邪, 袗.袠. 袛芯褏芯胁, 袙.袠. 袟邪褉懈褑泻懈泄, 袗.袙. 小械屑械薪褟泻邪, 袛.小. 袪邪褔泻芯胁, 袝.袗. 袣邪褌褞褕懈薪 // XV 屑械卸写褍薪邪褉芯写薪邪褟 薪邪褍褔薪芯-锌褉邪泻褌懈褔械褋泻邪褟 泻芯薪褎械褉械薪褑懈褟 芦小芯胁褉械屑械薪薪褘械 懈薪褎芯褉屑邪褑懈芯薪薪褘械 懈 褝谢械泻褌褉芯薪薪褘械 褌械褏薪芯谢芯谐懈懈禄, 26 鈥 30 屑邪褟 2014 谐.: 写芯泻谢. 鈥 袨写械褋褋邪: 袨袧袩校, 2014. 鈥 C. 181鈥182.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袧芯胁褘械 “褋胁械褉褏褉邪蟹褉械褕邪褞褖懈械” 锌械谢械薪谐邪褌芯褉褘 懈褋褌芯褔薪懈泻芯胁 褕褍屑芯胁褘褏 懈蟹谢褍-褔械薪懈泄 褋 胁褘褋芯泻懈屑 斜褘褋褌褉芯写械泄褋褌胁懈械屑 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.袙. 袗褌邪屑邪薪褋泻懈泄, 袛.小. 袪邪褔泻芯胁, 袗.袙. 小械屑械薪褟泻邪 // XV 屑械卸写褍薪邪褉芯写薪邪褟 薪邪褍褔薪芯-锌褉邪泻褌懈褔械褋泻邪褟 泻芯薪褎械褉械薪褑懈褟 芦小芯胁褉械屑械薪薪褘械 懈薪褎芯褉屑邪-褑懈芯薪薪褘械 懈 褝谢械泻褌褉芯薪薪褘械 褌械褏薪芯谢芯谐懈懈禄, 26 鈥 30 屑邪褟 2014 谐.: 褌械蟹懈褋褘 写芯泻谢. 鈥 袨写械褋褋邪: 袨袧袩校, 2014. 鈥 C. 174鈥180.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袣胁邪蟹懈芯锌褌懈屑邪谢褜薪褘械 邪谢谐芯褉懈褌屑褘 屑械卸写褍锌械褉懈芯写薪芯泄 芯斜褉邪斜芯褌泻懈 锌邪褔械褔薪褘褏 泻芯谐械褉械薪褌薪褘褏 褋懈谐薪邪谢芯胁 薪邪 褎芯薪械 锌邪褋褋懈胁薪褘褏 锌芯屑械褏 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.小. 袪邪褔泻芯胁, 袗.袙. 小械屑械薪褟泻邪, 袙.袩. 袪褟斜褍褏邪 // XX 袦械卸写褍薪邪褉芯写薪邪褟 薪邪褍褔薪芯-褌械褏薪懈褔械褋泻邪褟 泻芯薪褎械褉械薪褑懈褟 芦袪邪写懈芯-谢芯泻邪褑懈褟, 薪邪胁懈谐邪褑懈褟, 褋胁褟蟹褜 RLNC*2011禄, 15 鈥 17 邪锌褉械谢褟 2014 谐.: 写芯泻谢. 鈥 袙芯褉芯薪械卸: 袧袩肖 芦小袗袣袙袨袝袝禄 袨袨袨, 2014. 鈥 孝. 3. 鈥 小. 1660鈥1671.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袣胁邪蟹懈芯锌褌懈屑邪谢褜薪褘械 邪谢谐芯褉懈褌屑褘 屑械卸写褍锌械褉懈芯写薪芯泄 芯斜褉邪斜芯褌泻懈 锌邪褔械褔薪褘褏 泻芯谐械褉械薪褌薪褘褏 褋懈谐薪邪谢芯胁 薪邪 褎芯薪械 谐邪褍褋褋芯胁褘褏 屑械褕邪褞褖懈褏 芯褌褉邪卸械薪懈泄 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.袙. 袗褌邪屑邪薪褋泻懈泄, 袗.袙. 小械屑械薪褟泻邪, 袛.小. 袪邪褔泻芯胁, 袙.袩. 袪褟斜褍褏邪 // VII 袦褨卸薪邪褉芯写薪邪 薪邪褍泻芯胁芯-锌褉邪泻褌懈褔薪邪 泻芯薪褎械褉械薪褑褨褟 芦小褍褔邪褋薪褨 锌褉芯斜谢械屑懈 褨 写芯褋褟谐薪械薪薪褟 胁 谐邪谢褍蟹褨 褉邪写褨芯褌械褏薪褨泻懈, 褌械谢械泻芯屑褍薪褨泻邪褑褨泄 褌邪 褨薪褎芯-褉屑邪褑褨泄薪懈褏 褌械褏薪芯谢芯谐褨泄禄, 17鈥19 胁械褉械褋薪褟 2014 褉.: 褌械蟹懈 写芯锌芯胁褨写械泄. 鈥 袟邪锌芯褉褨卸卸褟: 袟袧孝校, 2014. 鈥 小. 47鈥48.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袣胁邪蟹懈芯锌褌懈屑邪谢褜薪褘械 邪谢谐芯褉懈褌屑褘 屑械卸写褍锌械褉懈芯写薪芯泄 芯斜褉邪斜芯褌泻懈 锌邪褔械褔薪褘褏 泻芯谐械褉械薪褌薪褘褏 褋懈谐薪邪谢芯胁 薪邪 褎芯薪械 谐邪褍褋褋芯胁褘褏 屑械褕邪褞褖懈褏 芯褌褉邪卸械薪懈泄 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.袙. 袗褌邪屑邪薪褋泻懈泄, 袗.袙. 小械屑械薪褟泻邪, 袛.小. 袪邪褔泻芯胁, 袙.袩. 袪褟斜褍褏邪 // 5-泄 袦械卸写褍薪邪褉芯写薪褘泄 褉邪写懈芯褝谢械泻褌褉芯薪薪褘泄 褎芯褉褍屑 芦袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 小芯褋褌芯褟薪懈械 懈 锌械褉褋锌械泻褌懈胁褘 褉邪蟹胁懈褌懈褟禄 袦袪肖-2014, 14 鈥 17 芯泻褌褟斜褉褟 2014 谐.: 写芯泻谢. 鈥 啸.: 啸袧校袪袝, 2014. 鈥 孝. 1. 鈥 C. 23鈥25.
- 袪褟斜褍褏邪 袙.袩. 孝芯褔薪芯褋褌褜 锌械谢械薪谐邪褑懈懈 褑械谢懈 锌褉懈 胁芯蟹写械泄褋褌胁懈懈 胁薪械褕薪懈褏 褕褍屑芯胁褘褏 懈蟹谢褍褔械薪懈泄 / 袙.袩. 袪褟斜褍褏邪, 袙.袠. 袟邪褉懈褑泻懈泄, 袗.袙. 小械屑械薪褟泻邪, 袛.小. 袪邪褔泻芯胁, 袝.袗. 袣邪褌褞褕懈薪 // 5-泄 袦械卸写褍薪邪褉芯写-薪褘泄 褉邪写懈芯褝谢械泻褌褉芯薪薪褘泄 褎芯褉褍屑 芦袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 小芯褋褌芯褟薪懈械 懈 锌械褉褋锌械泻褌懈胁褘 褉邪蟹胁懈褌懈褟禄 袦袪肖-2014, 14 鈥 17 芯泻褌褟斜褉褟 2014 谐.: 写芯泻谢. 鈥 啸.: 啸袧校袪袝, 2014. 鈥 孝. 1. 鈥 C. 49鈥50.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 小懈褋褌芯谢懈褔械褋泻懈械 褋褌褉褍泻褌褍褉褘 写胁褍屑械褉薪褘褏 懈 屑薪芯谐芯屑械褉薪褘褏 褉械褕械褌褔邪褌褘褏 褎懈谢褜褌褉芯胁 胁 蟹邪写邪褔邪褏 锌褉芯褋褌褉邪薪褋褌胁械薪薪芯-胁褉械屑械薪薪芯泄 芯斜褉邪斜芯褌泻懈 褋懈谐薪邪谢芯胁 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袗.袙. 小械屑械薪褟泻邪, 袛.小. 袪邪褔泻芯胁, 袝.袗. 袣邪褌褞褕懈薪 // 5-泄 袦械卸写褍薪邪褉芯写薪褘泄 褉邪写懈芯褝谢械泻褌褉芯薪薪褘泄 褎芯褉褍屑 芦袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 小芯褋褌芯褟薪懈械 懈 锌械褉褋锌械泻褌懈胁褘 褉邪蟹胁懈褌懈褟禄 袦袪肖-2014, 14 鈥 17 芯泻-褌褟斜褉褟 2014 谐.: 写芯泻谢. 鈥 啸.: 啸袧校袪袝, 2014. 鈥 孝. 1. 鈥 C. 59鈥63.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袩芯写邪胁谢械薪懈械 锌芯屑械褏 芯褌 屑械褋褌薪褘褏 锌褉械写屑械褌芯胁 胁 懈屑锌褍谢褜褋薪褘褏 写芯锌谢械褉芯胁褋泻懈褏 屑械褌械芯谢芯泻邪褌芯褉邪褏 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袛.小. 袪邪褔泻芯胁, 袗.袙. 小械屑械薪褟泻邪, 袙.袩. 袪褟斜褍褏邪, 袝.袗. 袣邪褌褞褕懈薪 // 5-泄 袦械卸写褍薪邪褉芯写薪褘泄 褉邪写懈芯褝谢械泻褌褉芯薪薪褘泄 褎芯褉褍屑 芦袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 小芯褋褌芯褟薪懈械 懈 锌械褉褋锌械泻褌懈胁褘 褉邪蟹胁懈褌懈褟禄 袦袪肖-2014, 14 鈥 17 芯泻褌褟斜褉褟 2014 谐.: 写芯泻谢. 鈥 啸.: 啸袧校袪袝, 2014. 鈥 孝. 1. 鈥 C. 90鈥96.
- 袥械褏芯胁懈褑泻懈泄 袛.袠. 袪械泻褍褉褉械薪褌薪褘械 邪谢谐芯褉懈褌屑褘 薪邪褋褌褉芯泄泻懈 邪写邪锌褌懈胁薪褘褏 褉械褕械褌褔邪褌褘褏 褎懈谢褜褌褉芯胁 / 袛.袠. 袥械褏芯胁懈褑泻懈泄, 袙.袩. 袪褟斜褍褏邪, 袛.小. 袪邪褔泻芯胁, 袗.袙. 小械屑械薪褟泻邪 // 孝械褏薪芯谢芯谐懈褟 懈 泻芯薪褋褌褉褍懈褉芯胁邪薪懈械 胁 褝谢械泻褌褉芯薪薪芯泄 邪锌锌邪褉邪褌褍褉械. 鈥 2016. 鈥 鈩 2鈥3. 鈥 小. 26鈥32.
- 袪褟斜褍褏邪 袙.袩. 袗写邪锌褌懈胁薪褘械 褋懈褋褌械屑褘 蟹邪褖懈褌褘 袪袥小 芯褌 褕褍屑芯胁褘褏 锌芯屑械褏. 1. 袣芯褉褉械谢褟褑懈芯薪薪褘械 邪胁褌芯泻芯屑锌械薪褋邪褌芯褉褘 薪邪 芯褋薪芯胁械 褋褌芯褏邪褋褌懈褔械褋泻懈褏 谐褉邪写懈械薪褌薪褘褏 邪谢谐芯褉懈褌屑芯胁 邪写邪锌褌邪褑懈懈 鈥 啸.: 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2016. 鈥 褌. 15, 鈩 1 鈥 小. 11鈥25.
- 袪褟斜褍褏邪 袙.袩. 袗写邪锌褌懈胁薪褘械 褋懈褋褌械屑褘 蟹邪褖懈褌褘 袪袥小 芯褌 褕褍屑芯胁褘褏 锌芯屑械褏. 2. 袣胁邪蟹懈薪褜褞褌芯薪芯胁褋泻懈械 泻芯褉褉械谢褟褑懈芯薪薪褘械 邪胁褌芯泻芯屑锌械薪褋邪褌芯褉褘. 袗写邪锌褌懈胁薪褘械 褉械褕械褌褔邪褌褘械 褎懈谢褜褌褉褘. 鈥 啸.: 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2016. 鈥 褌. 15, 鈩 2 鈥 小. 88鈥99.
- 袪褟斜褍褏邪 袙.袩. 袗写邪锌褌懈胁薪褘械 褋懈褋褌械屑褘 蟹邪褖懈褌褘 袪袥小 芯褌 褕褍屑芯胁褘褏 锌芯屑械褏. 3. 袦邪褌械屑邪褌懈褔械褋泻邪褟 屑芯写械谢褜 褋懈褋褌械屑褘 锌褉芯褋褌褉邪薪褋褌胁械薪薪芯泄 芯斜褉邪斜芯褌泻懈 褋懈谐薪邪谢芯胁 胁 袪袥小 褋 写胁褍屑械褉薪芯泄 锌谢芯褋泻芯泄 肖袗袪 鈥 啸.: 袩褉懈泻谢邪写薪邪褟 褉邪写懈芯褝谢械泻褌褉芯薪懈泻邪. 鈥 2016. 鈥 褌. 15, 鈩 4 鈥 小. 203鈥217.
Patents:
Utility model patent No. 112834 “System of protection of main (information) channels from interference” dated December 26, 2016, owner – Kharkiv National University of Radio Electronics, inventors: D.I. Lekhovitsky, V.P. Ryabukha, A.V. Semenyaka, E.A. Katyushin.
Prototypes:
A prototype of the module for adaptive digital space-time signal processing based on adaptive grating filters, design documentation for the prototype and recommendations for its use (contract No. DZ / 212-2015 dated 04.12.2015 with the Ministry of Education and Science of Ukraine). Performers: D.I. Lekhovitsky, V.P. Ryabukha, A.V. Semenyaka, E.A. Katyushin, Y.S. Shifrin V.I. Zaritsky, N.G. Maximova, G.A. Zhuga.