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A Study on Systems Engineering Based Compliance Procedure for A-SMGCS

시스템 엔지니어링을 적용한 A-SMGCS 적합성 검증 방안 연구

  • Seol, Eun-Suk (System Convergence Technology Division, Korea Testing Laboratory) ;
  • Kim, Sang-Hun (System Convergence Technology Division, Korea Testing Laboratory) ;
  • Ku, Sung-Kwan (Department of Aviation Leisure & Industry Management, Hanseo University) ;
  • Cho, Jeong-Hyun (System Convergence Technology Division, Korea Testing Laboratory)
  • 설은숙 (한국산업기술시험원 시스템융합본부) ;
  • 김상헌 (한국산업기술시험원 시스템융합본부) ;
  • 구성관 (한서대학교 항공레저산업학과) ;
  • 조정현 (한국산업기술시험원 시스템융합본부)
  • Received : 2014.12.19
  • Accepted : 2015.02.16
  • Published : 2015.02.28

Abstract

Advanced surface movement guidance and control system (A-SMGCS) is a system providing routing, guidance and surveillance for the control of aircraft and vehicles in order to maintain the predetermined surface movement rate under all weather conditions while maintaining the required level of safety. In the present study, system engineering was introduced to develop the compliance procedure for the A-SMGCS. At first, requirements for the level IV A-SMGCS were defined and analyzed from the concept of operations (CONOPS). Then, system architecture and specifications were constructed through the functional analysis and allocation. After that, work breakdown structure (WBS) and related integrated master schedule (IMS) were established. Lastly, compliance checklist (CCL) and test and evaluation master plan (TEMP) were developed to verify and validate the system.

A-SMGCS는 모든 기상조건에서 공항 이동지역 내 요구되는 안전수준을 확보하는 동시에 정해진 지상이동률을 유지하기 위하여 항공기와 차량에게 경로, 안내, 감시, 통제기능을 제공하는 시스템이다. 본 연구에서는 A-SMGCS 적합성 검증방안을 개발하기 위해 시스템 엔지니어링을 도입하였다. A-SMGCS 운용개념을 통해 레벨 IV급 A-SMGCS에 대한 요구사항을 정의하였으며, 기능분석과 할당을 통해 시스템 아키텍처와 시스템 규격을 도출하였다. A-SMGCS 개발을 위한 WBS와 IMS를 수립하였으며, 마지막으로 시스템에 대한 확인 및 검증을 위한 CCL과 TEMP를 개발하였다.

Keywords

References

  1. Advanced surface movement guidance and control system manual, International Civil Aviation Organization, Montreal, Canada: Doc 9830 AN/452, 2004.
  2. System Engineering Fundamentals, Fort Belvoir, VA: Defense Acquisition University Press, 2001.
  3. S. G. Min, Systems Engineering, 2nd ed, Seoul, Korea: System Engineering Institute Press, 2007.
  4. C. Haskins, M. Krueger, D. Walden, and R. D. Hamelin, System Engineering Handbook, v 3.2.2, San Diego, CA: International Council on Systems Engineering, 2011.
  5. System engineering based technology management practice guidelines for research and development, Defense Acquisition Program Administration, Seoul, Korea: 2012.
  6. Military aircraft airworthiness certification service provision, Defense Acquisition Program Administration, Seoul, Korea: 2009.

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