DOI QR코드

DOI QR Code

Methodology for Establishment of Operational Concept for Speed-Up of Defense Robot and Improvement Direction of the Defense Acquisition System

국방로봇 신속 전력화를 위한 운용개념 수립 방법론 및 획득체계 개선방향

  • Received : 2018.07.04
  • Accepted : 2018.08.20
  • Published : 2018.08.31

Abstract

The purpose of this paper is to suggest the methodology for the establishment of operational concept for speed-up of defense robot and improvement direction of the defense acquisition system for the defense robot. In order to achieve this goal, the current defense acquisition system was analyzed into long-term planning, mid-term programming, and project execution stages. And I suggest the methodology for the establishment of operational concept for speed-up of defense robot and direction of development of the defense robot acquisition system considering the characteristics of the robot in terms of core technologies of robot, robot ecosystem and effectiveness-based-robot-design, respectively. Based on the methodology for establishment of the operational concept of defense robot and development direction of the defense acquisition system presented in this study, it will be possible to design efficiently the defense robot in the future.

Keywords

References

  1. J. E. Kye, H. E. Hong, S. B. Jeon, Y. H. Kim, K. H. Kim, S. I. Kim, J. C. Ju, J. H. Park, J. N. Park, K. T. Hwang, C. S. Lee, S. D. Hong, H. I. Ahn, K. W. Shin, and J. C. Im, "A Study on the Development Direction of Future Combat System of ROK," DTaQ, Seoul, Korea, Rep. I, Dec., 2009.
  2. I. W. Kang, "Overview," 2011 - 2015 Global Defense Robot Acquisition Trend, DTaQ, 2015, ch. 1, pp. 26-30.
  3. J. K. Jeon, "Development Direction of National Defense Planning System," Defense Policy Research, vol. 112, no. 4, pp. 89-124, Jul., 2016.
  4. S. K. Lee, Y. J. Han, "Analysis and Implications of Rapid Acquisition System in the United States," Defense Weekly of KIDA, Seoul, Korea, Rep. 1628, Jul., 2016.
  5. J. K. Jeon, "The Role and Effectiveness of Mid-Term Defense Programming," Defense Weekly of KIDA, Seoul, Korea, Rep. 1490, Nov., 2013.
  6. J. E. Kye, "Trends and Acquisition Strategies on Defense Unmanned Robot Core Technology," Electronics and Telecommunications Trends, vol. 29, no. 3, pp. 118-130, Jun., 2014.
  7. J. K. Han, "Strengthening the application of modeling and simulation in defense acquisition phase," Defense Weekly of KIDA, Seoul, Korea, Rep. 1603, Jan., 2016.
  8. H. J. Uh and H. M. Lee, "A Note on the Development of a Ground Robot Weapon System," Defense Weekly of KIDA, Seoul, Korea, Rep. 1651, Dec., 2016.
  9. S. K. Seo and Y. S. Kim, "European Armed Forces Development System, Combat development System, Defense Planning Management System and Defense Acquisition System," The Journal of Strategic Studies, vol. 24, no. 3, pp. 111-150, Dec., 2017.
  10. J. O. Kim, J. J. Kang, S. Y. Bae, S. D. Baek, and S. Y. Sin "Robot system and Task design," Robots and Social Economy, Robot High School, 2013, ch. 2, sec. 1-2, pp. 180-188.
  11. H. S. Eom, "A design methodology of infantry platoon using combat robots based on the combat effectiveness," Ph. D. dissertation, Kwangwoon University, Seoul, Korea, 2015.
  12. Julie A. Adams, "Critical Considerations for Human-Robot Interface Development," AAAI Technical Report FS-02-03, Department of Computer Science Rochester Institute of Technology, pp. 1-4, Nov., 2002.
  13. Defense Business Management Regulations, Defense Acquisition Program Administration official order 432, Feb. 20, 2018.
  14. H. S. Jung, J. Y. Lee, and Y. H. Kim, "An Assessment of Combat Effectiveness for C4I System Considering Network Effect," Journal of society of Korea industrial and systems engineering, Vol. 33, no. 2, pp. 23-32, Jun., 2010.