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Integrating Quantum Technologies into Mobile Military Systems and Toc Frameworks

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Sep 18, 2025

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Braun, M., Pfau, T., & Helwig, W. (2021). Quantum-Enhanced Situational Awareness for Defense Systems. EPJ Quantum Technology, 8(1), 1-19. Search in Google Scholar

Choi, T. (2022). Quantum Technology and the Military: A Global Overview. European Union Institute for Security Studies (EUISS). Paris, France. Search in Google Scholar

Congressional Research Service. (2022). Quantum Technology: Overview and Policy Considerations. CRS Report IF11836, Washington, D.C., USA. Search in Google Scholar

Dijkstra, E. (2022). Quantum and Military Communication Security. University of Twente, Enschede, Netherlands. Search in Google Scholar

European Commission. (2021). Quantum Flagship Strategic Roadmap: Defence Sector Applications. Directorate-General for Communications Networks, Content and Technology, Brussels, Belgium. Search in Google Scholar

Government of Japan. (2021). Military Applications of Quantum Technologies. Government and Law Division, National Institute for Defense Studies, Tokyo, Japan. Search in Google Scholar

Gupta, V., Kaul, H., & Lakhani, N. (2021). Quantum Technology for Military Applications. Ministry of Defence, India. Search in Google Scholar

INET Framework. (2024). INET 4.x User Guide and Model Library for OMNeT++. Available at: https://inet.omnetpp.org/. Search in Google Scholar

Japan Air Power Competence Centre/JAPCC. (2022). Quantum in the Air Domain: Challenges and Opportunities. JAPCC Journal, Issue 35, Kalkar, Germany. Search in Google Scholar

Kania, E. & Costello, J. (2022). Securing the Quantum Future: UNIDIR Report on Military Quantum Integration. United Nations Institute for Disarmament Research (UNIDIR), Geneva, Switzerland. Search in Google Scholar

Khan, M.J. & Umar, M. (2023). Quantum Computing Applications in Defense. International Journal of Novel Research and Development, 8(5), 193-198. Search in Google Scholar

Krelina, M. (2025). An Introduction to Military Quantum Technology for Policymakers. SIPRI Background Paper, Stockholm International Peace Research Institute, Stockholm, Sweden. Search in Google Scholar

National Tactical Officers Association. (2018). Technology in Tactical Operations. NTOA, Doylestown, PA, USA. Search in Google Scholar

NATO IST Panel. (2020). Quantum Technologies for Military Applications. NATO ISTSET-198 Symposium, NATO STO, Brussels, Belgium. Search in Google Scholar

NATO SPS Programme. (2023). Quantum Technologies and the Science for Peace and Security Programme. NATO Emerging Security Challenges Division, Brussels, Belgium. Search in Google Scholar

Ningsih, S.J., Wadjdi, A.F., & Budiyanto, S. (2022). The Importance of Quantum Technology in National Defense in the Future. The International Journal of Business Management and Technology, 6(1), 273-275. Search in Google Scholar

Petrovski, A., Bogatinov, D., Radovanovic, M. & Radovanovic, M. (2023). Application of Drones in Crises Management Supported Mobile Applications and C4IRS Systems. In Dobrinkova, N., Nikolov, O. (eds) Environmental Protection and Disaster Risks. EnviroRISKs 2022. Lecture Notes in Networks and Systems, Vol. 638. Springer, Cham. https://doi.org/10.1007/978-3-031-26754-3_28 Search in Google Scholar

Radovanović, M., Petrovski, A., Žnidaršič, V., & Behlić, A. (2023). The C5ISR System Integrated with Unmanned Aircraft in the Large-Scale Combat Operations. Vojenské rozhledy, 32(2), 098-118. Search in Google Scholar

Reding, D.F. & Eaton, J. (2020). Science & Technology Trends: 2020-2040. NATO Science & Technology Organization, Brussels, Belgium. Search in Google Scholar

Varga, A., & Hornig, R. (2008). An overview of the OMNeT++ simulation environment. Proceedings of the 1st International Conference on Simulation Tools and Techniques for Communications, Networks and Systems & Workshops (Simutools), Marseille, France, 1-10. Search in Google Scholar