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실사격 시험 프로세스의 안전성 강화를 위한 MBSE 기반 아키텍처 연구

Model-Based Architecture Design of the Range Safety Process for Live Fire Test with Enhanced Safety

  • 예성혁 (국방과학연구소 종합시험본부) ;
  • 이재천 (아주대학교 시스템공학과)
  • Ye, Sung Hyuck (Defense Systems Test Center, Agency for Defense Development) ;
  • Lee, Jae-Chon (Dept. of Systems Engineering, Ajou University)
  • 투고 : 2014.04.17
  • 심사 : 2014.06.16
  • 발행 : 2014.06.30

초록

In weapon systems development, live fire tests have been frequently adopted to evaluate the performance of the systems under development. Therefore, it is necessary to ensure safety in the test ranges where the live fire tests can cause serious hazards. During the tests, a special care must be taken to protect the test and evaluation (T&E) personnel and also test assets from potential danger and hazards. Thus, the development and management of the range safety process is quite important in the tests of guided missiles and artillery considering the explosive power of the destruction. Note also that with a newly evolving era of weapon systems such as laser, EMP and non-lethal weapons, the test procedure for such systems is very complex. Therefore, keeping the safety level in the test ranges is getting more difficult due to the increased unpredictability for unknown hazards. The objective of this paper is to study on how to enhance the safety in the test ranges. To do so, an approach is proposed based on model-based systems engineering (MBSE). Specifically, a functional architecture is derived utilizing the MBSE method for the design of the range safety process under the condition that the derived architecture must satisfy both the complex test situation and the safety requirements. The architecture developed in the paper has also been investigated by simulation using a computer-aided systems engineering tool. The systematic application of this study in weapon live tests is expected to reduce unexpected hazards and test design time. Our approach is intended to be a trial to get closer to the recent theme in T&E community, "Testing at the speed of stakeholder's need and rapid requirement for rapid acquisition."

키워드

참고문헌

  1. W.D Bell(2010), "Systems Engineering Test and Evaluation - The Integration Process," ITEA Journal, 31:56-62
  2. 국방전력발전업무훈령, 훈령 제1388호, 2012.2.3.
  3. Jack K. Thompson(2010) "Recognizing the test development Life Cycle," ITEA Journal, 31 :103-108
  4. Brian Simmons(2012), "T&E-The speed of need,," ITEA Journal, 33:5-8
  5. Randon R. Herrin, Neil L. Barret(2012), "Interope - rability Testing at the Speed of Need,." ITEA Journal, 33:15-29
  6. Sung Hyuck Ye(2012),"On the development of IT-based test information system to share test infrastructure and advanced test requirement process for industry in Korea,." ITEA Annual symposium
  7. B.J. Yoo et at al(2012), "Systems Engineering based Live Fire Test of Weapon systems," KIMST, 5:28-35 https://doi.org/10.9766/KIMST.2012.15.1.028
  8. Y.M. Kim and J.C. Lee(2012) "On the integration of systems design and system safety process from an integrated data model viewpoint," Korea Safety Management & Science, 14:107-116 https://doi.org/10.12812/ksms.2012.14.4.107
  9. Ray C. Terry(2005), "System safety in systems engineering process," NDIA 8th Annual systems engineering conference
  10. Jeff A. Estefan(2008), "Survey of Model-Based Systems Engineering(MESE) Methodologies," Rev. B, INCOSE Tech. Pub., INCOSE-TD-2007 003-01
  11. Markus Hoppe, Avner Engel(2005), "Improving the VVT Process: Evaluating the SysTest Results in Six Industrial Pilot Projects," Proceedings of the 15th Annual INCOSE
  12. Clifton A. Ericson, II(2005), "Hazard Analysis Techniques for system safety," John Wiley & Sons, Inc.
  13. Joseph C. Chen, et al(2003)., "Modeling an off-nominal launch vehicle trajectory for range safety link analysis," Aerospace Conference, 2003 proceedings, 7:3419-3426.