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전투실험을 통한 미래 유·무인 혼합 보병분대 부대구조 보완방향 연구

A Study on the Complementary Direction of the Future Infantry Squad's Structure in Combat Experiment with Manned and Unmanned

  • 이한우 (경북대학교 통계학과) ;
  • 정민섭 (대한민국 육군 미래혁신연구센터) ;
  • 박상혁 (우석대학교 군사학과) ;
  • 문장권 (서울대학교 국제문제연구소)
  • 투고 : 2022.01.26
  • 심사 : 2022.03.08
  • 발행 : 2022.03.31

초록

본 연구는 4차 산업혁명의 변화와 더불어 첨단과학기술의 발전에 따른 해당 기술을 접목한 미래 유·무인 혼합 보병분대 운용 시 전투효과를 전투실험 기법을 적용하여 도출해 보는데 목적이 있다. 과거 인간 및 수동적 기술을 활용한 전쟁 수행방식에서 무인·자동화·정보화 등 디지털 기술로 변화하고 있다. 이러한 변화에 부응하고 미래 전쟁에 대비하기 위해 육군의 가장 기본 조직이자 직접적인 전투를 수행하는 분대의 부대구조를 보완하는 방안을 모색해 본다는 측면에서 전투실험을 통해 미래 유·무인 혼합 보병분대의 전투효과를 측정했으며, 일정 부분 효과가 있음을 확인 할 수 있었다. 미래 유·무인 혼합 보병분대 부대구조 발전을 모색할 시 여러 전투상황 속에서 AWAM 모델을 이용하여 실험한다면, 좀 더 최적화된 미래 유·무인 혼합 보병분대 부대구조를 찾는데 도움을 줄 것이라 생각한다.

The purpose of this study is to derive the combat effect by applying combat experiments when operating a future manned/unmanned mixed infantry squad that combines the technology according to the development of advanced science and technology along with changes in the 4th industrial revolution. Contrary to conventional battles involving humans and manually-operated weaponry, modern-day warfare relies on unmanned, automated and intelligence technologies. In order to respond to these changes and prepare for future warfare, the combat effect of future manned and unmanned mixed infantry squads through combat experiments in terms of finding ways to supplement the structure of the squad that conducts direct combat as the most basic organization of the army was measured, and it was confirmed that there was an effect to a certain extent. When seeking the development of the future manned/unmanned mixed infantry squad unit structure, if the AWAM model is used in various combat situations, it will help to find a more optimized future manned/unmanned mixed infantry squad unit structure.

키워드

참고문헌

  1. C. S. Young, Introduction to Defense Modeling and Simulation, Book Korea Pub, 2013.
  2. U. S. Department of Defense, Unmanned Systems Integrated Roadmap (FY2011-2036). 2011b.
  3. E. H. Seob, "A design methodology of infantry platoon using combat robots based on the combat effectiveness," Kwang Woon University, 2016.
  4. J. K. Moon, "A Study on Paradigm Shifts in Future Warfare and Method of Development for Unit Organization the Korean Army," The Journal of Social Convergence Studies, 5(2), pp. 29-42, 2021.
  5. Moon, J. et al., A Study on the Comparison of Combat Function Priorities in Future Manned/ Unmanned Infantry Battalions : Focused on the Use of AHP. Youngcheon : Korea Army Academy at Yeongcheon Choongsungdae Research Institute, 2020.
  6. K. R. Lee & M. S. Jung & S. H. Park, "Future Army Super-Connected New Concept Weapon System," The Journal of the Convergence on Culture Technology, 6(4), pp. 663-667, 2020. https://doi.org/10.17703/JCCT.2020.6.4.663
  7. Ernest H. Page, "Modeling and Simulation, Experimentation, and Wargaming-Assessing a Common Landscape," MA: The MITRE Corporation, 2016.
  8. H. S. Eom & Y. J. Park & J. I. Oh, "A Study on the Supplementary Course of the Structure of future Infantry Division through Warfighting Experimentation," The Quarterly Journal of Defense Policy Studies, 31(3), pp. 127-147, 2015. https://doi.org/10.22883/JDPS.2015.31.3.005
  9. Korea Research Institute for Strategy, 2011 Army Combat Experiment Development Seminar Combat Experiment Techniques, Korea Research Institute for Strategy Pub, 2011.
  10. K. J. Eup. "Trends and Acquisition Strategies on Defense Unmanned Robot Core Technology." Electronics and Telecommunications Trends, 29(3), pp. 118-130, 2014.
  11. U. S. Department of Defense, Unmanned Ground Systems Roadmap : Robotic Systems Joint Project Office, 2011a.