10.10.2025; Суми, Україна: VII Міжнародна наукова конференція «Інновації та науковий потенціал світу»
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THE USE OF UNMANNED SYSTEMS AND ARTIFICIAL INTELLIGENCE TO ENHANCE RADIATION AND CHEMICAL SAFETY IN MILITARY ECOLOGY

Islam Islamov
Baku Engineering University, Azerbaijan
Elshan Hashimov
Azerbaijan Technical University, Azerbaijan
Ramil Akhundov
National Defence University, Azerbaijan
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Опубліковано 10.10.2025

Як цитувати

Islamov, I., Hashimov, E., & Akhundov, R. (2025). THE USE OF UNMANNED SYSTEMS AND ARTIFICIAL INTELLIGENCE TO ENHANCE RADIATION AND CHEMICAL SAFETY IN MILITARY ECOLOGY. Матеріали конференцій МЦНД, (10.10.2025; Суми, Україна), 183–192. вилучено із https://archives.mcnd.org.ua/index.php/conference-proceeding/article/view/1087

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Анотація

The problem of ensuring radiation and chemical safety has become one of the central challenges in modern military ecology. Military activities, both during armed conflicts and in peacetime training, create significant risks of contamination of natural environments with hazardous substances. The consequences of radioactive and chemical pollution are not limited to immediate threats to the health of military personnel but extend to long-term degradation of ecosystems, water resources, and soil quality. These effects undermine both environmental stability and national security.

Посилання

  1. 1. Akhundov, E.F. et al. (2023). Increasing Efficiency of Operation of Shut-Off Valves in Pipelines. International Organization.
  2. 2. Akhundov, R. (2024). Modern developments in the field of weapons of mass destruction and defence against them. In Problems of Informatization: Proceedings of the 12th International Scientific and Technical Conference (Vol. 3, pp. 132–133).
  3. 3. Akhundov, R. (2024). The environmental impact of military activities. ResearchGet.
  4. 4. Akhundov, R. (2025). Advancements in monitoring radiation and chemical hazards for military environmental safety. Матеріали конференцій МЦНД, (04.07.2025; Ужгород, Україна), 89–97. https://doi.org/10.62731/mcnd-04.07.2025.002
  5. 5. Akhundov, R. (2025). Application of innovative technologies for the decontamination and neutralization of radiological and chemical hazards in military environments. Collection of Scientific Papers «ΛΌГOΣ», (August 1, 2025; Seoul, South Korea), 107–115. https://doi.org/10.36074/logos-01.08.2025.017
  6. 6. Akhundov, R. (2025). Establishing a global system for radiation and chemical security monitoring: importance and opportunities for international cooperation. Collection of scientific papers «ΛΌГOΣ», (July 4, 2025; Zurich, Switzerland), 121-127.
  7. 7. Akhundov, R. G., & Eldarov, E. A. (2024). Special operations forces in modern conflicts. Вестник науки и образования, (6[149]), 16–20.
  8. 8. Akhundov, R. G., & Talibov, A. M. (2024, May 2–3). Environmental safety as a component of national security. In The Latest Technologies – for the Protection of Airspace: Abstracts of the 20th International Scientific Conference of the Kharkiv National University of the Air Force Named After Ivan Kozhedub (pp. 25–27). Kharkiv, Ukraine.
  9. 9. Akhundov, R., & Hashimov, E. (2025). Military activity and the environment: The need for a systemic approach to radiological and chemical safety. Матеріали конференцій МЦНД, (16.05. 2025; Миколаїв, Україна), 187-197.
  10. 10. Akhundov, R., & Hashimov, E. (2025). Radiation and chemical protection as a strategic priority of environmental security in the military sphere. Матеріали конференцій МЦНД, (16.05. 2025; Миколаїв, Україна), 202-211.
  11. 11. Akhundov, R., & Hashimov, E. (2025). The environmental impact of war: Effects, challenges, and solutions. Матеріали конференцій МЦНД, (27.06. 2025; Дніпро, Україна), 103-112.
  12. 12. Akhundov, R., & Hashimov, E. (2025). The impact of new technologies on enhancing the efficiency of armed . Матеріали конференцій МЦНД, (13.06. 2025; Луцьк, Україна), 186-195.
  13. 13. Akhundov, R., & Islam, I. (2025). Ensuring environmental safety in military activities considering radiological and chemical protection. Collection of scientific papers «SCIENTIA», (May 23, 2025; New York, USA), 175-182.
  14. 14. Akhundov, R., & Islamov, I. (2025). Comprehensive approach to establishing operational modes of environmental security systems in military forces under radiation and chemical hazards. Collection of Scientific Papers «SCIENTIA», (August 8, 2025; Liverpool, UK), 108–116.
  15. 15. Akhundov, R., & Islamov, I. (2025). Exploring the potential, challenges, and future of robots and autonomous systems in warfare. Матеріали конференцій МЦНД, (18.07.2025; Тернопіль, Україна), 117–126.
  16. 16. Akhundov, R., & Islamov, I. (2025). Implementation of new technologies for cleaning and neutralizing radiological and chemical contaminants in military environments. Матеріали конференцій МЦНД, (30.05. 2025; Київ, Україна), 321-329.
  17. 17. Akhundov, R., & Islamov, I. (2025). Implementation of new technologies for cleaning and neutralizing radiological and chemical contaminants in military environments. Матеріали конференцій МЦНД, (30.05. 2025; Київ, Україна), 321-329.
  18. 18. Akhundov, R., & Islamov, I. (2025). Innovative technologies for enhancing environmental security in armed forces under radiation and chemical threats. Матеріали конференцій МЦНД, (15.08.2025; Харків, Україна), 141–150.
  19. 19. Akhundov, R., & Islamov, I. (2025). Innovative technologies for radiation and chemical protection in the armed forces. Collection of scientific papers «ΛΌГOΣ», (June 6, 2025; Bologna, Italy), 247-255.
  20. 20. Akhundov, R., & Islamov, I. (2025). Operational modes of environmental security systems in the armed forces facing radiation and chemical threats. Collection of Scientific Papers «SCIENTIA», (August 22, 2025; Bern, Switzerland), 103–111.
  21. 21. Axundov, R. Q. (2023). Azərbaycan Ordusunda radiasiya, kimyəvi və bioloji kəşfiyyatın xüsusiyətləri. 4-cü Sənaye İnqilabı və İqtisadiyyatın Rəqəmsallaşdırılması: Beynəlxalq Elmi Konfransın Materialları, 104-108.
  22. 22. Axundov, R. Q. (2024). Azərbaycan Ordusunda ekoloji təhlükəsizliyin təşkili və təkmilləşdirilməsi. Hərbi Bilik, (4), 7-15.
  23. 23. Babayev, S. et al. (2024). Prospects for the application of nanotechnology in the military sector. In Problems of Informatization: Proceedings of the 12th International Scientific and Technical Conference (Vol. 3, pp. 14–15).
  24. 24. Babayev, S. et al. (2025). Enhancing operational effectiveness through command and control integration of autonomous robot swarms. Scientific review of the actual events, achievements and problems: Collection of scientific papers «SCIENTIA» with Proceedings of the V International Scientific and Theoretical Conference (October 3, 2025, Berlin, Germany) (pp. 75–82). https://doi.org/10.36074/scientia-03.10.2025
  25. 25. Babayev, S. M. et al. G. (2024). The impact of new technologies on the progress of military art. In Proceedings of International Scientific and Practical Conference (Vol. 6, pp. 54-56).
  26. 26. Bayramov, A.A. (2018). Assessment of invisible areas and military objects in mountainous terrain. Defence Science Journal, 68(4), 343-346.
  27. 27. Bayramov, A.A. et al (2018). The supervisory control systems deployment in mountainous terrain. In VIII Int. Conf.“Modern development trends of ICT and control methods (pp. 3-4).
  28. 28. Bayramov, A.A. et al. (2016). The detection of invisible objects on the terrain on the basis of GIS technology. Geography and nature sources, 124-126.
  29. 29. Ganimat, I. B., & Qiyas, H. E. (2021). Analysis and selection performance indicators multiservice communication networks based on the concept NGN and FN. Computer and information systems and technologies.
  30. 30. Garayev, M. et al. (2025). Wind, sun, and hydroenergy: a look into Azerbaijan’s green energy future. Collection of Scientific Papers «ΛΌГOΣ», 125–133. https://doi.org/10.36074/logos-01.08.2025.019
  31. 31. Garayev, M. F. et al. (2025). Analysis of shear stress resistance and abrasive wear in surface layers of materials for military use. İn Current directions of development of information and communication technologies and control tools. Vol. 4: sections 6. p.55
  32. 32. Hasanov, A. H. et al. (2024). Scientific and technological progress or environmental safety. In Problems of Informatization: Proceedings of the 12th International Scientific and Technical Conference (Vol. 3, pp. 22–23).
  33. 33. Hasanov, A.H. (2022). Analysis of the effectivness of communication and automated management systems. In Modern directions of development of information and communication technologies and management tools, (Vol. 1, pp. 1-4).
  34. 34. Hashimov, E.G. et al. (2015). Application of relief digital model for combat operation planning. Military Knowledge, 4, 63-69.
  35. 35. Hashimov, E.G. et al. (2016). Terrain orthophotoplanes making for military objects revealing. National security and military sciences, 2(4), 14-20.
  36. 36. İbrahimov, B.G. et al. (2022). Research and analysis indicators fiber-optic communication lines using spectral technologies. Advanced information systems, 6(1), 61-64.
  37. 37. Ibrahimov, B.G. et al. (2024). Research and analysis mathematical model of the demodulator for assessing the indicators noise immunity telecommunication systems. Advanced Information Systems, 8(4), 20-25.
  38. 38. Islamov, I. et al. (2025). Big data analytics and machine learning for predicting radiation and chemical threats in the military sphere. Theory and practice of modern science: Collection of scientific papers «SCIENTIA» with proceedings of the X International Scientific and Theoretical Conference (September 26, 2025, Kraków, Republic of Poland) (pp. 30–38). https://doi.org/10.36074/scientia-26.09.2025
  39. 39. Islamov, I. et al. (2025). Hybrid communication models for UAV swarms: Towards scalable and energy-aware network optimization. Scientific guidelines: Theory and practice of research – Proceedings of the VI International Scientific Conference (Kyiv, Ukraine, October 3, 2025), pp. 185–195. https://doi.org/10.62731/mcnd-03.10.2025
  40. 40. Islamov, I. et al. (2025). Integrating environmental security into defense strategy with a focus on radiological and chemical risks. Strategic directions of science development: Factors of influence and interaction: Collection of scientific papers with materials of the VII International Scientific Conference (September 26, 2025, Cherkasy, Ukraine) (pp. 115–125). https://doi.org/10.62731/mcnd-26.09.2025
  41. 41. Ismayil, I. et al. (2025). Optimization of composite material selection in the design of military UAV wings. Scientific review of the actual events, achievements and problems: Collection of scientific papers «SCIENTIA» with Proceedings of the V International Scientific and Theoretical Conference (pp. 107–115) https://doi.org/10.36074/scientia-03.10.2025
  42. 42. İsmayil, İsmayil. (2025). Security and protection of Azerbaijan’s oil and gas pipelines: cybersecurity and risk management approaches. Матеріали конференцій МЦНД, 136–144. https://doi.org/10.62731/mcnd-11.07.2025.004
  43. 43. Jabrayilov, A. et al. (2025). Digital technologies and artificial intelligence in the management of environmental safety in the army. In Current directions of development of information and communication technologies and control tools. Proc. of 15-th International Scientific and Technical Conference (Vol. 1, pp. 110-111).
  44. 44. Jabrayilov, A. R. et al. (2025). Development of a comprehensive environmental protection system for military facilities. Current directions of development of information and communication technologies and control tools (Vol. 4, pp. 82–83).
  45. 45. Jabrayilov, A. R. et al. (2025). Experience of international cooperation in the field of military environmental safety. Current directions of development of information and communication technologies and control tools (Vol. 1, pp. 116–117).
  46. 46. Jabrayilov, A. R. et al. (2025). Prospects for creating closed ecological life support systems. Current directions of development of information and communication technologies and control tools (Vol. 4, pp. 92–93).
  47. 47. Jabrayilov, A. R. et al. (2025). The role of environmental monitoring in ensuring the safety of military units. Current directions of development of information and communication technologies and control tools (Vol. 1, pp. 128–129).
  48. 48. Mammadov, E. S. et al. (2025). Environmental impact of transportation systems: Challenges and sustainable solutions. Scientific review of the actual events, achievements and problems: Collection of scientific papers «SCIENTIA» with Proceedings of the V International Scientific and Theoretical Conference (October 3, 2025, Berlin, Germany) (pp. 120–128). https://doi.org/10.36074/scientia-03.10.2025
  49. 49. Mammadov, E. V. et al. (2025). Development of multilayered protection systems against chemical, radiological, and biological hazards for military personnel. Current directions of development of information and communication technologies and control tools (Vol. 1,
  50. pp. 112–113).
  51. 50. Mammadov, R. et al. (2024). Enhancing special forces management efficiency in modern operations. In Problems of Informatization: Proceedings of the 12th International Scientific and Technical Conference (Vol. 3, pp. 31–32).
  52. 51. Piriyev, H.K. et al. (2016). Modelling of the battle operations. Monografiya, Herbi Nashriat”, Baku.–2017.
  53. 52. Piriyev, H.K. et al. (2016). Provide interactive training methods. Methodological materials. Baku: Military publishing house.
  54. 53. Tahirov, R. K. et al. (2024). Environmental aspects of information technology implementation. In Problems of Informatization: Proceedings of the 12th International Scientific and Technical Conference (Vol. 3, pp. 138–139).
  55. 54. Talibov, A. et al. (2024). Environmental safety of nanomaterials application. In Problems of Informatization: Proceedings of the 12th International Scientific and Technical Conference (Vol. 3, pp. 55–56). Baku–Kharkiv–Bielsko-Biala.
  56. 55. Talibov, A. et al. (2024). The main anthropogenic sources of atmospheric pollution. In Problems of Informatization: Proceedings of the 12th International Scientific and Technical Conference (Vol. 3, pp. 53–54). Baku–Kharkiv–Bielsko-Biala.
  57. 56. Talibov, A. M. et al. (2025). Application of biotechnology to mitigate the consequences of radiological and chemical contamination. İn Current directions of development of information and communication technologies and control tools, 1, 86-87.
  58. 57. Talibov, A. M. et al. (2025). Modeling and forecasting radiological and chemical threats in the military sphere. In Current directions of development of information and communication technologies and control tools: Proceedings of the 15th International Scientific and Technical Conference (Vol. 1, pp. 120-121).
  59. 58. Talibov, A. M. et al. (2025). The use of unmanned aerial vehicles for monitoring chemical and radiation contamination. In Current directions of development of information and communication technologies and control tools: Proceedings of the 15th International Scientific and Technical Conference (Vol. 4, pp. 88-89).
  60. 59. Talibov, A. M. et al. (2025). Training military personnel in radiation and chemical threat protection methods. Proceedings of the 15th International Scientific and Technical Conference (Vol. 4, p. 94–95).
  61. 60. Talibov, A.M. (2024). Vehicle transport cost calculation method. In Current directions of development of information and communication technologies and control tools. (Vol. 2, pp. 3-6).
  62. 61. Talibov, A.M. et al. (2023). On the optimal placement of logistics centers. Baku: Informatics and Control Problems, (43), 51-58.
  63. 62. Talibov, A.M. et al. (2023, May). Optimal placement of logistics centers in the Republic of Azerbaijan. In 2nd International Conference on Problems of Logistics, Management and Operation in The East-West Transport Corridor. (pp. 24-26).
  64. 63. Гашимов, Э. Г. (2015). Пьезоэлектрических композиты для разработки на их основе приемно-передающих акустических антенн. Евразийский Союз Ученых, (5-3 (14)), 38-40.
  65. 64. Гашимов, Э.Г. (2016). Сейсмолокационная станция. Военное обозрение, 1(01), 30-41.