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    감항인증 시스템 안전 절차에 관한 연구 = A Study on the System Safety Process of the Airworthiness Certification

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    https://www.riss.kr/link?id=A107962966

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In that the operating environment of the aircraft is in the air, aircraft failure can cause enormous human and material damage and requires a very high level of safety compared to other means of transportation or systems. In order to operate an aircraft, it must obtain the airworthiness certification specified in the law, and through this, the flight safety of the aircraft must be approved. In this paper, system safety was studied based on military aircraft airworthiness certification. Military aircraft airworthiness certification, system safety, and system safety procedures were summarized, and various civil and military system safety standards and guidelines were examined. As standards and guidelines related to system safety procedures, we looked at MIL-STD-882E, SAE ARP4754A, SAE ARP4761, 14 CFR, and DoDI 5000.02 and studied the correlation. For example, when the aircraft is partially modified, the system safety task was analyzed and examples of matters to be addressed in the system safety program plan were presented. Individual system safety tasks were analyzed based on MIL-STD-882E, a system safety standard applied to the airworthiness certification of military aircraft, and were divided into applied and non-applied items. Establishing a system safety program plan is very important at the stage where a general design of system configuration is made, and an example of the matters to be covered in the system safety program plan is presented based on MIL-STD-882E.
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    In that the operating environment of the aircraft is in the air, aircraft failure can cause enormous human and material damage and requires a very high level of safety compared to other means of transportation or systems. In order to operate an aircra...

    In that the operating environment of the aircraft is in the air, aircraft failure can cause enormous human and material damage and requires a very high level of safety compared to other means of transportation or systems. In order to operate an aircraft, it must obtain the airworthiness certification specified in the law, and through this, the flight safety of the aircraft must be approved. In this paper, system safety was studied based on military aircraft airworthiness certification. Military aircraft airworthiness certification, system safety, and system safety procedures were summarized, and various civil and military system safety standards and guidelines were examined. As standards and guidelines related to system safety procedures, we looked at MIL-STD-882E, SAE ARP4754A, SAE ARP4761, 14 CFR, and DoDI 5000.02 and studied the correlation. For example, when the aircraft is partially modified, the system safety task was analyzed and examples of matters to be addressed in the system safety program plan were presented. Individual system safety tasks were analyzed based on MIL-STD-882E, a system safety standard applied to the airworthiness certification of military aircraft, and were divided into applied and non-applied items. Establishing a system safety program plan is very important at the stage where a general design of system configuration is made, and an example of the matters to be covered in the system safety program plan is presented based on MIL-STD-882E.

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    참고문헌 (Reference)

    1 이슬기, "무인항공기 시스템 모델링을 통한 신뢰성 및 가용성 분석" 한국지식정보기술학회 8 (8): 81-91, 2013

    2 유승우, "고장 데이터의 확률 분석을 적용한 항공기 시스템 안전성 평가 수행 방안 연구" 항공우주시스템공학회 31-38, 2020

    3 김기원, "Study on the UAV Hovering using a Mouse-based Optical Flow Sensor" 한국지식정보기술학회 10 (10): 537-545, 2015

    4 Defense Acquisition Program Administration, "Standard Airworthiness Certification Standards for Military Aircraft, Defense Acquisition Program Administration Notice No. 2020-3"

    5 Defense Acquisition Program Administration, "Operational Rule on the Certification of Flight Safety for Military Aircraft, Directive No. 619"

    6 Department of Defence, "MIL-STD882E :Standard practice for system safety"

    7 Federal Aviation Administration, "FAR Part 21:Certification procedures for products and parts"

    8 Defense Acquisition Program Administration, "Enforcement Decree of the Act on the Certification of Flight Safety for Military Aircraft, Presidential Decree No. 30137"

    9 Department of Defence, "DoD Instruction 5000.02:Operation of the adaptive acquisition framework"

    10 D. M. Lee, "Comparison of aviation electronic system development airworthiness certification : DO-178C & RESSAC" Korea Aerospace University 2020

    1 이슬기, "무인항공기 시스템 모델링을 통한 신뢰성 및 가용성 분석" 한국지식정보기술학회 8 (8): 81-91, 2013

    2 유승우, "고장 데이터의 확률 분석을 적용한 항공기 시스템 안전성 평가 수행 방안 연구" 항공우주시스템공학회 31-38, 2020

    3 김기원, "Study on the UAV Hovering using a Mouse-based Optical Flow Sensor" 한국지식정보기술학회 10 (10): 537-545, 2015

    4 Defense Acquisition Program Administration, "Standard Airworthiness Certification Standards for Military Aircraft, Defense Acquisition Program Administration Notice No. 2020-3"

    5 Defense Acquisition Program Administration, "Operational Rule on the Certification of Flight Safety for Military Aircraft, Directive No. 619"

    6 Department of Defence, "MIL-STD882E :Standard practice for system safety"

    7 Federal Aviation Administration, "FAR Part 21:Certification procedures for products and parts"

    8 Defense Acquisition Program Administration, "Enforcement Decree of the Act on the Certification of Flight Safety for Military Aircraft, Presidential Decree No. 30137"

    9 Department of Defence, "DoD Instruction 5000.02:Operation of the adaptive acquisition framework"

    10 D. M. Lee, "Comparison of aviation electronic system development airworthiness certification : DO-178C & RESSAC" Korea Aerospace University 2020

    11 Ministry of Land, Infrastructure, and Transport, "Aviation Safety Law, Act No. 17613"

    12 G. H. Cho, "Application to aircraft design of system safety" (5) : 55-63, 1991

    13 H. K. Yoon, "Airworthiness certification practice written from experience in aircraft development" G-WORLD Publisher Corp 2014

    14 Defense Acquisition Program Administration, "Act on the Certification of Flight Safety for Military Aircraft, Act No. 16353"

    15 Society of Automotive Engineers, Inc, "ARP 4761:Guidelines and methods for conducting the safety assessment process on civil airborne systems and equipment"

    16 Society of Automotive Engineers, Inc, "ARP 4754A:Guidelines for development of civil aircraft and systems"

    17 Korea Authority of Land & Infrastructure Safety, "A study on the improvement of the design for safety application manual" 2017

    18 M. H. Kim, "A study on airworthiness of modified military aircraft" Gyeongsang National University 2017

    19 H. L. Lee, "A study of airworthiness certification criteria and compliance of flying qualities for military aircraft" Gyeongsang National University 2018

    20 Defence Agency for Technology and Quality Aviation Center, "A guidebook for airworthiness certification of aircraft localization development parts"

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