DOI QR코드

DOI QR Code

Design and Application of the Warfighting Experiment Process Using the Intelligent Maturity Model in Software Intensive Systems

지능형 성숙도 모델을 이용한 소프트웨어 집약 시스템의 전투실험 프로세스 설계 및 적용

  • 강동수 (국방대학교 전산정보학과) ;
  • 윤희병 (국방대학교 전산정보학과)
  • Published : 2007.10.25

Abstract

We propose the design of the warfighting experiment process for software intensive systems using the intelligent maturity model and suggest the application results of the target searching capability in smart UAV. For this, we design the intelligent maturity model to evaluate the intelligent degree of the software intensive systems considering the domain and intelligent level. Then we classify the IS0/1EC-12207 process and CMMI process as LITO domain for designing the warfighting experiment process, map the classifed process to the five factors of the warfighting experiment and derive the process as warfighting experiment element and phase. Based on the derived process, we design the warfighting experiment process using the IDEF0. Finally we apply the proposed process to the target search capability and suggest the results which are required to develop and acquire the smart UAV.

본 논문에서는 지능형 성숙도 모델을 이용한 소프트웨어 집약 시스템의 전투실험 프로세스 설계를 제안하고 스마트 무인항공기의 표적탐색 능력에 적용한 결과를 제시한다. 이를 위해 먼저 소프트웨어 집약 시스템의 지능형 정도를 평가할 수 있는 지능형 성숙도 모델을 영역 수준 및 지능 수준을 고려하여 설계한다. 그런 다음 전투실험 프로세스 설계를 위해 ISO/IEC-12207과 CMMI 프로세스를 LITO 분야별로 분류하고 이를 전투실험 5요소와 매핑하여 전투실험 요소별 그리고 전투실험 단계별로 프로세스를 도출한다. 도출된 프로세스를 기반으로 IDEF0 표기법을 이용하여 전투실험 프로세스를 설계한다. 마지막으로 제안한 전투실험 프로세스는 스마트 무인항공기(UAV)를 개발하거나 획득 시에 요구되는 표적탐색 능력에 적용하며 그 결과도 제시한다.

Keywords

References

  1. Dongsu Kang and Heebyung Yoon, 'Design of Intelligence Maturity Model for Judging a Requirement of Smart UAV's Searching Ability,' Proceedings of KFIS Autumn Conference, Vol. 16, No.2, pp.310-313, 2006
  2. Software Technology Support Center, Guidelines for Successful Acquisition and Management of Software Intensive Systems, Ver. 3.0, Department of The Air Force, May 2000
  3. Richard A. Kass, Understanding Joint Warfighting Experiments, USJFCOM, 1998
  4. LT. C Mitchell and S. Ross, An Application of Artificial Intelligence to Provide Strategic Warning to an Information Warfare Attack Against National Information Infrastructures, U.S. Army War College, 1997
  5. ISO/IEC 12207, Information Technology Software Life Cycle Processes, 1995
  6. CMMI Product Development Team, CMMI for Development, Ver. 1.2, SEI, Carnegie Mellon University, August 2006
  7. R.A., 'For Application of the Concepts to Test and Evaluation, Design of Valid Operational Test,' International Journal of Test and Evaluation, pp.51-59, June/July 1997
  8. Myron Hura et al., Interoperability: A Continuing Challenge in Coalition Air Operations, RAND Research, 2001
  9. Nils J. Nilsson, Artificial Intelligence: A New Synthesis, Morgan Jaufmann, 1998
  10. Haeng-Rok Oh and Heung-Seo Koo, 'A Study on Assessment Model of Interoperability in Weapon Systems based on LISI', Journal of Fuzzy Logic and Intelligent Systems, Vol. 17, No. 3, pp.410-416, June 2007 https://doi.org/10.5391/JKIIS.2007.17.3.410
  11. Mark H. Mol, Advanced Concept Technology Demonstrations(ACTU): Are They Relevant in Today's Acquisition Environment?, Air Command and Staff College Air University, April 1998