Advances in air defense systems
PDF
HTML

Keywords

sistemas de defensa
defensa antiaérea
aeronáutica militar

How to Cite

Paliz Ochoa, P. X., Acosta Bedon, J. F., Tiuma, A., & Bravo, M. (2022). Advances in air defense systems. Athenea Engineering Sciences Journal, 3(9), 15-25. https://doi.org/10.47460/athenea.v3i9.42

Abstract

This paper presents the advances and characteristics of air defense systems technically. The information is derived from a systematic review of technical databases dealing exclusively with military defense against airborne threats. Many advances have been developed in which Artificial Intelligence AI already plays a fundamental role, in some cases enabling decisions to be made with a greater probability of success and precision than with decisions and the speed of human reactions.

https://doi.org/10.47460/athenea.v3i9.42
PDF
HTML

References

[1] J.-U. Kim y M. Kuk-Heug, «A Research on China’s ballistic missile modernization and the Terminal High Altitude Area Defense(THAAD) system in Korea", J. China Stud., vol. 21, n.o 4, pp. 139-153, 2018, doi: 10.20288/JCS.2018.21.4.139.
[2] H.-Y. Kim, «A Study on the Effects of Non-Tariff Barriers after THAAD Dispute between Korea and China, KOREA Int. Commer. Rev. vol. 32, n.o 3, pp. 211-230, 2017.
[3] J. Zhang, J. Jiang, y Y. Chen, «Air defense and anti-missile weapons allocation in hierarchical systems under multi-objectives and multi decision-makers condition», Guofang Keji Daxue XuebaoJournal Natl. Univ. Def. Technol., vol. 37, n.o 1, pp. 171-178, 2015, doi: 10.11887/j.cn.201501029.
[4] D. Li, Q. Zhang, X. Li, Y. Xu, y J. Yang, «Architecture modeling for equipment of airborne anti-missile based on DoDAF», Xi Tong Gong Cheng Yu Dian Zi Ji ShuSystems Eng. Electron., vol. 39, n.o 5, pp. 1036-1041, 2017, doi: 10.3969/j.issn.1001-506X.2017.05.14.
[5] J. Yan, W. Pu, H. Liu, S. Zhou, y Z. Bao, «Cooperative target assignment and dwell allocation for multiple target tracking in phased array radar network», SIGNAL Process., vol. 141, pp. 74-83, dic. 2017, doi:10.1016/j.sigpro.2017.05.014.
[6] E. Blanche, «EI AI to fit anti-SAM system», Janes Missiles Rockets, 2004, [En línea]. Disponible en: https://www.scopus.com/inward/record.uri?eid=2-s2.0-
23844544671&partnerID=40&md5=063a401d1853b1bbc442375032cd9f2b.
[7] B. Lara, «Europe and the anti-missile defenses», UNISCI Discuss. Pap., vol. 30, pp. 93-109, 2012.
[8] J. Lee, «Korea’s THAAD Deployment and China’s Retaliation - Implication for China’s Obligation under the GATS -", “THAAD, Korean J. Int. Econ. Law, vol. 15, n.o 2, pp. 7-42, 2017, doi: 10.46271/KJIEL.2017.07.15.2.7.
[9] L.-X. Zhao y K. Changgyeong, «["China’s Cognition on THAAD Deployment and Improvement of Sino-ROK Relationship", Chin. Stud., vol. 61, pp. 413-424, 2017, doi: 10.14378/KACS.2017.61.61.24.
[10] S. J. Cimbala, «Missile Defenses and Mother Russia: Scarecrow or Showstopper?», Eur. Secur., vol. 16, n.o
3-4, pp. 289-306, sep. 2007, doi: 10.1080/09662830701751133.
[11] A. Sheldon-Duplaix, «Russia-China Naval Partnership and Its Significance», en Russia-China Relations, S.
Kirchberger, S. Sinjen, y N. Wörmer, Eds. Cham: Springer International Publishing, 2022, pp. 101-120. doi:
10.1007/978-3-030-97012-3_6.
[12] H. Obering, «Directed Energy Weapons Are Real . . . And Disruptive», Dir. ENERGY WEAPONS, n.o 3, p. 10.
[13] M. N. Mirza, I. H. Qaisrani, L. A. Ali, y A. A. Naqvi, «Unmanned Aerial Vehicles: A Revolution in the Making», South Asian Stud., p. 15.
[14] «SUMMARY-OF-THE-JOINT-ALL-DOMAIN-COMMAND-AND-CONTROL-STRATEGY.pdf». Accedido: 13 de agosto de 2022. [En línea]. Disponible en:
https://media.defense.gov/2022/Mar/17/2002958406/-1/-1/1/SUMMARY-OF-THE-JOINT-ALL-DOMAINCOMMAND-AND-CONTROL-STRATEGY.PDF
[15] «Multi-Object Kill Vehicle (MOKV) – Missile Defense Advocacy Alliance». https://missiledefenseadvocacy.org/defense-systems/multiple-kill-vehicle-mkv/ (accedido 13 de agosto de 2022).
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

Downloads

Download data is not yet available.