http://doi.org/10.35668/978-966-479-156-1
The Study of the State of Intellectual Property Objects in the World Market, which are the Priority for the National Defense Industry: monograph / T. Pysarenko, T. Kvasha, L. Rozhkova, V. Bogomazova, N. Shabranska, O. Paladchenko, I. Molchanova, edited by T. Pysarenko. — Kyiv: UkrISTEI, 2025. — 476 p.
UDC 001.18;002.513.5;355/359-356.252.5
ISBN 978-966-479-156-1
Pysarenko T. V. — PhD in Engineering, Deputy Director, Ukrainian Institute of Scientific and Technical Expertise and Information, 180, Antonovycha Str., Kyiv, Ukraine, 03150; +38 (096) 376-38-14; tvpisarenko@gmail.com; ORCID: http://orcid.org/0000-0001-9806-2872
Kvasha T. K. — Head of the Department, Ukrainian Institute of Scientific and Technical Expertise and Information, 180, Antonovycha St., Kyiv, Ukraine, 03150; (044) 521-00-74; ntatyana@ukr.net; kvasha@uintei.kiev.ua; ORCID: 0000-0002-1371-3531
Rozhkova L. V. — Head of the Sector, Ukrainian Institute of Scientific and Technical Expertise and Information, 180, Antonovycha Str., Kyiv, Ukraine, 03150; (044) 5210080, Е-mail: liliya_rozhkova@ukr.net, ORCID: http://orcid.org/0000-0001-8002-3461
Bogomazova V. M. — PhD in Economics, Senior Researcher, Ukrainian Institute of Scientific and Technical Expertise and Information”, Antonovich Str., 180, Kyiv, Ukraine, 03680; +38 (067) 367-90-14; Е-mail: verbog@ukr.net, ORCID: http://orcid.org/0000-0002-8756-3871
Shabranska N. I. — PhD in Economics, Senior Researcher, Ukrainian Institute of Scientific and Technical Expertise and Information”, Antonovich Str., 180, Kyiv, Ukraine, 03680; +38 (067) 367-90-14; Е-mail tasha.stanker@gmail.com; ORCID: 0000-0001-7731-281Х
Paladchenko O. F. — Head of the Sector, Ukrainian Institute of Scientific and Technical Expertise and Information, 180, Antonovycha St., Kyiv, Ukraine, 03150; (044) 521-00-80; epalada@ukr.net; paladchenko@uintei.kiev.ua; ORCID: 0000-0002-5436-1608
Molchanova I. V. — Senior Researcher, Ukrainian Institute of Scientific and Technical Expertise and Information, 180, Antonovycha St., Kyiv, Ukraine, 03150; +38 (044) 521-00-80; molchanova_irina@ukr.net; ORCID: 0000-0003-1679-5621
Abstract. The monograph presents the results of the study of the intellectual property objects, related to the military sphere. The role of new technologies in the military sphere is extremely important and rapidly growing, as they change not only the methods of conducting combat operations, but also the very essence of defense, strategic planning, and protecting national security.
There were selected patents available on the world market which are perspective and thematically related to the priorities of development of Ukrainian defense industry. The following technological areas were studied: radar stations, missile and air defense, high-precision weapons, electronic warfare, electromagnetic pulse ammunition, smart image analysis and recognition systems, models of countermeasures for anti-aircraft missile systems, aircraft repair technologies, technologies for operational mobile non-destructive testing of critical elements of aircraft structures, technologies for diagnostics and rehabilitation of brain damage and post-traumatic stress disorders.
The paper is based on NATO foresight studies and patent search in the international database “Derwent Innovation”. The patent analysis with the use of Derwent Innovation tools allowed to identify the most relevant and promising technologies in the military sphere.
The results, presented in the monograph, can be used by representatives of public authorities, experts, scientists, engineering and technical personnel, professors of higher education institutions.
Keywords: patent, technology, national defense industry, radar station, electromagnetic impulse, weapon, air defense, aviation equipment, post-traumatic stress disorder.
REFERENCES:
- Defence Express (2020). 10 trendiv maibutnoho [10 trends of future]. URL: https://defence-ua.com/minds_and_ideas/10_trendiv_majbutnogo-2067.html [in Ukr]
- The New World. (2025). Defense News. URL: https://www.defensenews.com/smr/sdi-events/2025/02/07/the-new-world/
- Pysarenko T. V., Kvasha, T. K. (2020). Hlobalni tekhnolohichni trendy u sferi ozbroiennia ta viiskovoi tekhniky [Global technological trends in the field of weapons and military tech ]. Kyiv: UkrINTEI. URL: https://mon.gov.ua/static-objects/mon/sites/1/innovatsii-transfer-tehnologiy/2021/09/30/Hlobal.tekhn.trend.sfer.ozbr.viysk.tekhn-2020.30.09.pdf [in Ukr]
- Pysarenko T. V. (2023). Oboronno-promyslovyi kompleks: naukovo-tekhnolohichni trendy [Defense industry: scientific and technological trends] / T. Pysarenko, T. Kvasha, V. Bohomazova, O. Paladchenko, I. Molchanova, N. Shabranska. Kyiv: UkrINTEI. URL: http://doi.org/10.35668/978-966-479-140-0 [in Ukr]
- Pysarenko T. V. (2021). Analiz svitovykh tekhnolohichnykh trendiv u viiskovii sferi [Analysis of the global technological trends in the military sphere] / T. Pysarenko, T. Kvasha, T. Havrys ta in. Kyiv: UkrINTEI. URL: http://doi.org/10.35668/978-966-479-127-1 [in Ukr]
- Bohomazova V. M. (2023). Svitovi tekhnolohichni trendy u sferi “Viiskova aviatsiia”[ Global technological trends in the field of military aviation]. Kyiv: UkrINTEI. URL: http://doi.org/10.35668/978-966-479-138-7 [in Ukr]
- Sliusar V. I., Sotnyk V. V., Kupchyn A. V. (2020). Proryvni tekhnolohii v oboronnii sferi Ukrainy [Breakthrough technologies in Ukraine's defense sector]. Ozbroiennia ta viiskova tekhnika, (4)28. S.13–23. URL: https://doi.org/10.34169/2414-0651.2020.4(28).13-23 [in Ukr]
- Kupchyn A., Sotnyk V. (2021). A model of disruptive technologies determination for defense sphere. Issues of Armament Technology, 156(1). P. 65–83. URL: https://doi.org/10.5604/01.3001.0015.2529
- Lavrich Y. (2023). Realization of the technology of dual use of outer space control means. URL: http://space-scitechjournal.org.ua/en/archive/2023/4/09
- Ihnatenko O. The underexploited potential of Ukrainian defence tech. The Strategist (ASPI). URL: https://www.aspistrategist.org.au/the-underexploited-potential-of-ukrainian-defence-tech/
- Hmyria V., Nikitchenko V., Shynkarenko O. (2024). Development of the defence industry of Ukraine to ensure national security. URL: https://doi.org/10.55643/fcaptp.3.56.2024.4366
- Androshchuk H. O., Kvasha T. K. (2019). Patentnyi landshaft yak instrument prohnozuvannia svitovykh tekhnolohichnykh trendiv: sfera ozbroiennia ta viiskovoi tekhniky [The patent landscape as a tool for forecasting global technology trends: the field of weapons and military equipment]. Nauka, tekhnolohii, innovatsii, 4(12). S. 28–40 [in Ukr].
- Kvasha T. K., Androshchuk H. O. (2022). Vykorystannia instrumentiv analityky intelektualnoi vlasnosti dlia vyznachennia tekhnolohichnykh trendiv u viiskovii sferi [Using intellectual property analytics tools to identify technological trends in the military sphere]. Materialy konferentsii “Intelektualna vlasnist yak skladova systemy zabezpechennia natsionalnoi bezpeky” (s. 98–104). Kyiv: NDI intelektualnoi vlasnosti NAPrN Ukrainy. [in Ukr].
- European Defence Agency. (2023). Enhancing EU Military Capabilities beyond 2040. URL: https://eda.europa.eu/docs/default-source/eda-publications/enhancing-eu-military-capabilities-beyond-2040.pdf
- Mohsan S. A. H., Othman N. Q. H., Li, Y., et al. (2023). Unmanned aerial vehicles (UAVs): Practical aspects, applications, open challenges, security issues, and future trends. Intelligent Service Robotics, 16. P. 109–137. URL: https://doi.org/10.1007/s11370-022-00452-4.
- Gargalakos M. (2024). The role of unmanned aerial vehicles in military communications: application scenarios, current trends, and beyond. Journal of Defense Modeling and Simulation, 21(3). P. 313–321. URL: https://ideas.repec.org/a/sae/joudef/v21y2024i3p313-321.html
- Gupta A., Fernando X. (2022). Simultaneous Localization and Mapping (SLAM) and Data Fusion in Unmanned Aerial Vehicles: Recent Advances and Challenges. URL: https://www.mdpi.com/2504-446X/6/4/85
- Hong YW, Yoo DY. (2024) Multiple Intrusion Detection Using Shapley Additive Explanations and a Heterogeneous Ensemble Model in an Unmanned Aerial Vehicle's Controller Area Network. URL: https://www.mdpi.com/2076-3417/14/13/5487
- Tiberiu Giurgiu, Ioan Virca, Vasile Năstăsescu. (2023) Trends in Development of Military Vehicles Capabilities Based on Advanced Technologies. URL: https://www.researchgate.net/publication/372496017_Trends_in_Development_of_Military_Vehicles_Capabilities_Based_on_Advanced_Technologies
- Elias M. Radzia, Zuraida Hassanb, Mohd Azril Ismail.(2025). Enhancing armored crew safety: A scientometric and scoping review of key trends, challenges, and innovations. URL: https://www.researchgate.net/publication/390273749_Enhancing_armored_crew_safety_a_scientometric_and_scoping_review_of_key_trends_challenges_and_innovations
- Siengchin S. (2023). A review on lightweight materials for defence applications: Present and future developments. URL: https://www.sciencedirect.com/science/article/pii/S2214914723000557?via%3Dihub
- Ján Kruželák, Andrea Kvasničáková. (2021). Progress in polymers and polymer composites used as efficient materials for EMI shielding. URL: https://doi.org/10.1039/D0NA00760A
- Ding YB, Yue XK. (2021) Review of control and guidance technology on hypersonic vehicle. URL: https://doi.org/10.1016/j.cja.2021.10.037
- NATO. (2023). Science & Technology Trends 2023-2043. Across the Physical, Biological, and Information Domains. VOLUME 1: Overview. URL: https://www.nato.int/nato_static_fl2014/assets/pdf/2023/3/pdf/stt23-vol1.pdf
- NATO (2023). Science & Technology Trends 2023-2043. Across the Physical, Biological, and Information Domains. VOLUME 2: Analysis. URL: https://www.nato.int/nato_static_fl2014/assets/pdf/2023/3/pdf/stt23-vol2.pdf
- National Security Commission on Artificial Intelligence. (2021). Final Report 2021. URL: https://www.dwt.com/-/media/files/blogs/artificial-intelligence-law-advisor/2021/03/nscai-final-report--2021.pdf
- Deiaki pytannia rozvytku krytychnykh tekhnolohii u sferi vyrobnytstva ozbroiennia ta viiskovoi tekhniky [Some issues concerning the development of critical technologies in the field of arms and military equipment production]. Rozporiadzhennia KMU vid 30.08.2017 № 600-r URL: https://zakon.rada.gov.ua/laws/show/600-2017-%D1%80#Text [in Ukr]
- DK 020:2016 “Edynyi klasyfikator predmetiv postachannia” [Unified classification of supply items]. URL: https://www.mil.gov.ua/content/standarts/DK_020_2016_zmina_1.pdf [in Ukr]
- Stratehiia morskoi bezpeky Ukrainy. [The maritime security strategy of Ukraine] Zatverdzheno Ukazom Prezydenta Ukrainy vid 17 lypnia 2024 roku № 468/2024. URL: https://zakon.rada.gov.ua/laws/show/468/2024#n11 [in Ukr]
- Bohomazova V.M., Kvasha T.K. (2020). Analiz perspektyvnykh svitovykh naukovykh ta tekhnolohichnykh napriamiv doslidzhen za Tsilliu staloho rozvytku № 9 shchodo transportnoi sfery z vykorystanniam instrumentiv platform «Web of Science» ta «Derwent Innovation» [Analysis of the promising global scientific and technological research areas under Sustainable Development Goal No. 9 in the transport sector using the Web of Science and Derwent Innovation platforms]: naukovo-analitychna zapuska. K.: UkrINTEI, 2020. 33 s. URL: https://mon.gov.ua/nauka/innovatsiyna-diyalnist-ta-transfer-tekhnologiy/analitichni-materiali-2/analitichni-dovidki [in Ukr]
- Sliusar V.Y. (2005). Osnovnue poniatyia teoryy y tekhnyky antenn. Antennue systemu evklydovoi heometryy. Fraktalnue antennu. SMART-antennu. Tsyfrovue antennue reshetky (TsAR). MIMO–systemu na baze TsAR. [Basic concepts of antenna theory and technology. Antenna systems of Euclidean geometry. Fractal antennas. SMART antennas. Digital antenna arrays (DAA). MIMO systems based on DAA] Razdelu 9.3 - 9.8 v knyhe «Shyrokopolosnue besprovodnue sety peredachy informatsyy». / Vyshnevskyi V.M., Liakhov A.Y., Portnoi S.L., Shakhnovych Y.V. M.: Tekhnosfera. S. 498 – 569.
- Sliusar V.Y. (2004). Smart-antennu poshly v seriyu [Smart antennas go into production]. Elektronyka: nauka, tekhnolohyia, byznes. № 2. S. 62 – 65.
- Sliusar V.Y. (2001). Tsyfrovoe formyrovanye lucha v systemakh sviazy: budushchee rozhdaetsia sehodnia [Digital beamforming in communication systems: the future is born today]. Elektronyka: nauka, tekhnolohyia, byznes. № 1. S. 6 - 12.
- Sliusar V.Y. (2002). Tsyfrovue antennue reshetky: aspektu razvytyia [Digital Antenna Arrays: Development Aspects]. Spetsyalnaia tekhnyka i vooruzhenye. № 1,2. S. 17 - 23.
- Reding D. F. (2023). Science & Technology Trends 2023–2043. Across the Physical, Biological, and Information Domains. NATO Science & Technology Organization. Brussels. Vol. 2: Analysis. 286 p. URL: https://www.nato.int/nato_static_fl2014/assets/pdf/2023/3/pdf/stt23-vol2.pdf
- Klymchenko V. Y., Tiutiunnyk V. O., Takhian K. A., Rybalka H. V. (2022). Osoblyvosti radiolokatsiinoi rozvidky hiperzvukovykh litalnykh aparativ [Features of radar reconnaissance of hypersonic aircrafts]. Zbirnyk naukovykh prats Kharkivskoho natsionalnoho universytetu Povitrianykh Syl. № 2 (72). S. 41-46. URL: https://doi.org/10.30748/zhups.2022.72.06 [in Ukr]
- Stratehiia rozvytku oboronno-promyslovoho kompleksu Ukrainy [Strategy for the development of the defense-industrial complex of Ukraine]. Zatverdzheno Ukazom Prezydenta Ukrainy vid 20 serpnia 2021 roku № 372/2021. URL: https://www.president.gov.ua/documents/3722021-39733 [in Ukr]
- Stratehiia natsionalnoi bezpeky Ukrainy. Bezpeka liudyny - bezpeka krainy [National Security Strategy of Ukraine Human security - country security]. Zatverdzheno Ukazom Prezydenta Ukrainy vid 14 veresnia 2020 roku № 392/2020. Verkhovna Rada Ukrainy. Zakonodavstvo Ukrainy. URL : https://zakon.rada.gov.ua/laws/show/392/2020#n12 [in Ukr.]
- Kyiv Post. (2024). Protypovitriana oborona: yak pobudovana systema PPO v Ukraini [Air defense: how is the air defense system built in Ukraine]? URL: https://www.kyivpost.com/uk/post/28470 [in Ukr]
- Manachynskyi O. Vysokotochna zbroia (VTZ) [High precision weapon]. Entsyklopediia suchasnoi Ukrainy. URL: https://esu.com.ua/article-34168 [in Ukr]
- Hashimov E. G. The importance of a navigation system for UAV / E. G. Hashimov, S. A. Muradov // Suchasni napriamy rozvytku informatsiino-komunikatsiinykh tekhnolohii ta zasobiv upravlinnia : tezy dop. 13-yi mizhnar. nauk.-tekhn. konf., 26-27 kvitnia 2023 r., Baku–Kharkiv–Zhylina : [u 2 t.]. T. 2 : sektsiia 2 / Nats. un-t oborony Azerbaidzhanskoi Respubliky [ta in.]. Kharkiv : Impress, 2023. – S. 10-11. URL: https://repository.kpi.kharkov.ua/handle/KhPI-Press/65303 [in Ukr]
- Kevin J. Walchko. (2002). Low cost Inertial Navigation: Learning to Integrate Noise and Find Your Way. A Thesis Presented to The Graduate School of The University Of Florida in Partial Fulfillment of The Requirements For The Degree of Master of Science. URL: https://www.researchgate.net/publication/229061435_Low_cost_inertial_navigation_learning_to_integrate_noise_and_find_your_way
- George T. Schmidt. (2004). INS/GPS Technology Trend .URL: https://apps.dtic.mil/sti/tr/pdf/ADA581015.pdf
- Riabykh V. (2020). Elektromahnitna zbroia pro yaku ostannim chasom bahato hovoriat, staie realnym faktorom stratehichnoi perevahy na suchasnomu poli boiu [Electromagnetic weapons, which have been talked about a lot lately, are becoming a real factor of strategic advantage on the modern battlefield]. URL: https://defence-ua.com/weapon_and_tech/elektromagnitna_zbroja_osidlati_trendi-505.html [in Ukr]
- Proiekty zenitno- raketnykh kompleksiv vid DerzhKKB “LUCH”[ Projects of anti-aircraft missile systems from the State Design Bureau “Luch”]. Vertykal novoho klasu. URL: https://defence-ua.com/weapon_and_tech/projekti_zenitno_raketnih_kompleksiv_vid_derzhkkb_luch-444.html [in Ukr]
- Intelligent control. URL: https://www.google.com/search?q=Intelligent+control&sourceid=chrome&ie=UTF-8
- Tekhnichne obsluhovuvannia ta remont povitrianykh suden i aviadvyhuniv [Maintenance and repair of aircraft and aircraft engines]. URL: https://glau.kr.ua/index.php/ua/abiturient/perelikspec/ftorpsa [in Ukr]
- Pravyla derzhavnoi aviatsii z inzhenerno-aviatsiinoho zabezpechennia [The rules of state aviation on engineering and aviation support]. URL: https://surl.lu/trpikg [in Ukr]
- Osnovni napriamy rozvytku ozbroiennia ta viiskovoi tekhniky na dovhostrokovyi period [Main directions of development of weapons and military equipment for the long term]. Skhvaleno rozporiadzhenniam Kabinetu Ministriv Ukrainy vid 14 chervnia 2017 r. № 398-r. URL: https://zakon.rada.gov.ua/laws/show/398-2017-%D1%80#Text [in Ukr]
- Pravyla inzhenerno-aviatsiinoho zabezpechennia derzhavnoi aviatsii Ukrainy [The rules for engineering and aviation support of state aviation of Ukraine.]. Zatverdzheno nakazom Ministerstva oborony Ukrainy 05.07.2016 № 343. Zareiestrovano v Ministerstvi yustytsii Ukrainy 08 serpnia 2016 r. za № 1101/29231. URL: https://zakon.rada.gov.ua/laws/show/z1101-16 [in Ukr]
- Analiz isnuiuchykh system tekhnichnoi ekspluatatsii aviatsiinoi tekhniky taktychnoi aviatsii Povitrianykh Syl Zbroinykh Syl Ukrainy [Analysis of existing systems for technical operation of tactical aviation equipment of the Air Force of the Armed Forces of Ukraine]. Zbirnyk naukovykh prats Derzhavnoho naukovo-doslidnoho instytutu aviatsii. 2020. Vyp. № 16(23) [in Ukr]
- Suslikov L. M., Studeniak I.P. (2016). Neruinivni metody kontroliu [Non-destructive testing methods]. Navchalnyi posibnyk dlia studentiv fizyko-tekhnichnykh spetsialnostei. – Uzhhorod: Vydavnytstvo UzhNU. 192 s. URL: https://sro-a.ru/upload/medialibrary/c17/GOSTR-56542_2019.pdf [in Ukr]
- Bilokur Y.P. (1990). Defektolohiia i neruinivnyi control [Defectology and non-destructive testing].– Kyiv: Vyshcha shk. 207 s.
- Ahmed Md.A., A.S.N. Huda, N.A.M. Isa. (2015). Recursive construction of output-context fuzzy systems for the condition moni-toring of electrical hotspots based on infrared thermography. Engineering Applications of Artificial Intelligence. Vol.39.P. 120-131.
- Lazariev M. I., Shmatkov D. I. (2012). Neruinuiuchyi kontrol tekhnichnykh obiektiv u skhemakh [Non-destructive testing of technical objects in diagrams]: navchalnyi posibnyk dlia studentiv vyshchykh navchalnykh zakladiv. Kharkiv: UIPA. 162 s. [in Ukr]
- DSTU EN ISO 17637:2017 Neruinivnyi kontrol zvarnykh shviv [Non-destructive testing of welds. Visual inspection.]. Vizualnyi kontrol. URL: https://online.budstandart.com/ua/catalog/doc-page.html?id_doc=72977
- DSTU EN ISO 3452-1:2014 Neruinivnyi kontrol. Kapiliarnyi control [Non-destructive testing. Capillary testing]. URL: https://online.budstandart.com/ua/catalog/doc-page?id_doc=81333
- DSTU EN ISO 17638:2018 Neruinivnyi kontrol zvarnykh shviv. Mahnitoporoshkovyi control [Non-destructive testing of welds. Magnetic particle testing]. URL: https://online.budstandart.com/ua/catalog/doc-page.html?id_doc=80070
- DSTU EN ISO 17636-1:2014 Neruinivnyi kontrol zvarnykh shviv. Radiohrafichnyi control [Non-destructive testing of welds. Radiographic testing.]. URL: https://online.budstandart.com/ua/catalog/doc-page?id_doc=79435
- DSTU EN ISO 17640:2018 Neruinivnyi kontrol zvarnykh shviv. Ultrazvukovyi control [Non-destructive testing of welds. Ultrasonic testing]. https://online.budstandart.com/ua/catalog/doc-page.html?id_doc=78845
- DSTU EN 10246-1:2006 Neruinivnyi kontrol. Avtomatyzovanyi elektromahnitnyi kontrol [Non-destructive testing. Automated electromagnetic testing].URL: https://online.budstandart.com/ua/catalog/doc-page?id_doc=60347
- Hai, T., Agimi, Y., & Stout, K. (2023). Prevalence of Comorbidities in Active and Reserve Service Members Pre and Post Traumatic Brain Injury, 2017-2019. Mil Med, 188(1– 2). P. 270–277.
- Loignon, A., Ouellet, M. C., & Belleville, G. (2020). A Systematic Review and Meta-analysis on PTSD Following TBI Among Military/Veteran and Civilian Populations. J Head Trauma Rehabil, 35(1). P. 21–35.
- Vasterling, J. J., Jacob, S. N., Rasmusson, A. (2018). Traumatic Brain Injury and Posttraumatic Stress Disorder: Conceptual, Diagnostic, and Therapeutic Considerations in the Context of Co-Occurrence. J Neuropsychiatry Clin Neurosci, 30(2). P. 91–100.
- Ministerstvo oborony Ukrainy. (2024). Minoborony pratsiuie nad stvorenniam systemy psykholohichnoi pidtrymky dlia viiskovosluzhbovtsiv [The Ministry of Defense is working on creating a psychological support system for military personnel]. URL: https://mod.gov.ua/news/minoboroni-praczyuye-nad-stvorennyam-sistemi-psihologichnoyi-pidtrimki-dlya-vijskovosluzhbovcziv [in Ukr]







