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    개방형 아키텍처 기반의 차기 전술차량 계열화 발전방향 = Open Architecture-based Advanced Serialization Approach for LTVs

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    https://www.riss.kr/link?id=A108897808

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In the evolving landscape of warfare, both conventional and advanced threats necessitate the development of versatile weapon systems. As the Korean military readies for such challenges, guided by Defense Innovation 4.0 and Army Vision 2050, there is a need to innovate tactical vehicles for diverse mission requirements. Drawing lessons from the U.S. military's operational experiences with humvees in Iraq and Afghanistan, there is a noticeable shift towards the versatile use of tactical vehicles. Key military powers are now advancing towards the serialization and modularization of these vehicles for multi-mission adaptability. Inspired by the U.S. military's Modular Open Systems Approach (MOSA), this paper delves into the development of functional and institutional strategies for the next-generation of tactical vehicles. Through an analysis of current tactical vehicles domestically and internationally, the study critiques the limitations of domestic serialization and advocates for the benefits of an open architecture-based approach, suggesting key functional and institutional refinements in the acquisition process.
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    In the evolving landscape of warfare, both conventional and advanced threats necessitate the development of versatile weapon systems. As the Korean military readies for such challenges, guided by Defense Innovation 4.0 and Army Vision 2050, there is a...

    In the evolving landscape of warfare, both conventional and advanced threats necessitate the development of versatile weapon systems. As the Korean military readies for such challenges, guided by Defense Innovation 4.0 and Army Vision 2050, there is a need to innovate tactical vehicles for diverse mission requirements. Drawing lessons from the U.S. military's operational experiences with humvees in Iraq and Afghanistan, there is a noticeable shift towards the versatile use of tactical vehicles. Key military powers are now advancing towards the serialization and modularization of these vehicles for multi-mission adaptability. Inspired by the U.S. military's Modular Open Systems Approach (MOSA), this paper delves into the development of functional and institutional strategies for the next-generation of tactical vehicles. Through an analysis of current tactical vehicles domestically and internationally, the study critiques the limitations of domestic serialization and advocates for the benefits of an open architecture-based approach, suggesting key functional and institutional refinements in the acquisition process.

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    참고문헌 (Reference)

    1 한동휘 ; 황진용 ; 배지훈 ; 이종혁, "지상무기체계 성능개량을 위한 개방형 시스템 아키텍처 및 데이터 모델 설계" 한국정보기술학회 19 (19): 151-161, 2021

    2 김지원 ; 권용수, "복합무기체계에서의 개방형 아키텍처 적용에 관한 연구" 한국방위산업학회 20 (20): 175-191, 2013

    3 김기택 ; 김승춘, "국방 무기체계 성능개량사업 신속추진 방안에 관한 연구 - K1계열 전차 성능개량사업을 중심으로 -" 한국IT정책경영학회 12 (12): 1625-1634, 2020

    4 Carlson, T. F., "Using Modular Open Systems Approach(MOSA) to address System survivability in Army Weapon systems"

    5 Cho, S., "Trends In Maneuver Weapon System Serialization and Strategies for Developing Platform-Based Modularity" 523 : 82-91, 2022

    6 Schmidt, Douglas C., "Towards Common Operating Platform Environments"

    7 Schirer, W., "The Military Machine"

    8 Schmidt, Douglas C., "The Architectural Evolution of DoD Combat Systems"

    9 Schmidt, D. C., "The Architectural Evolution of DoD Combat Systems"

    10 Kim, C. J., "Tactical vehicle development direction in line with future operational environment." 476 : 114-125, 2018

    1 한동휘 ; 황진용 ; 배지훈 ; 이종혁, "지상무기체계 성능개량을 위한 개방형 시스템 아키텍처 및 데이터 모델 설계" 한국정보기술학회 19 (19): 151-161, 2021

    2 김지원 ; 권용수, "복합무기체계에서의 개방형 아키텍처 적용에 관한 연구" 한국방위산업학회 20 (20): 175-191, 2013

    3 김기택 ; 김승춘, "국방 무기체계 성능개량사업 신속추진 방안에 관한 연구 - K1계열 전차 성능개량사업을 중심으로 -" 한국IT정책경영학회 12 (12): 1625-1634, 2020

    4 Carlson, T. F., "Using Modular Open Systems Approach(MOSA) to address System survivability in Army Weapon systems"

    5 Cho, S., "Trends In Maneuver Weapon System Serialization and Strategies for Developing Platform-Based Modularity" 523 : 82-91, 2022

    6 Schmidt, Douglas C., "Towards Common Operating Platform Environments"

    7 Schirer, W., "The Military Machine"

    8 Schmidt, Douglas C., "The Architectural Evolution of DoD Combat Systems"

    9 Schmidt, D. C., "The Architectural Evolution of DoD Combat Systems"

    10 Kim, C. J., "Tactical vehicle development direction in line with future operational environment." 476 : 114-125, 2018

    11 Boring, B., "Program Executive Office Combat Support and Combat Service Support"

    12 Lee, B., "Priority Decision Based on Users’ Requirements for the Development of Militart Vehicles," 18 (18): 122-129, 2010

    13 "NDAA 2017 SEC.85. MODULAR OPEN SYSTEM APPROACH IN DEVELOPMENT OF MAJOR WEAPON SYSTEMS"

    14 Grayson, T. P., "Mosaic Warfare and Human–Machine Symbiosis" 1 (1): 1-12, 2021

    15 Tirpak, J. A., "Modular Weapons Could Improve Surge Capacity" Bunch Says in Exit Interview

    16 Tirpak, J. A., "Modular Weapons Could Improve Surge Capacity" Bunch Says in Exit Interview

    17 Deputy Director for Engineering, "Modular Open Systems Approach (MOSA)Reference Frameworks in Defense Acquisition Programs" Department of Defense 9-, 2020

    18 US Defense for Research and Engineering, "Modular Open Systems Approach"

    19 Welby, S. P., "Modular Open System Architecture in DoD Acquisition"

    20 Editors., "Ministry of National Defense and KIDA" 523 : 16-17, 2022

    21 Blume, S. V., "Make Good Choices, DoD: Optimizing Core Decisionmaking Processes for Great-Power Competition" Center for a New American Security 16-, 2019

    22 Song, Y. S., "Long-term strategy of the Army beyond the 4th Industrial Revolution - Army Vision 2050" 496 : 46-57, 2020

    23 Rheinmetall, "LYNX Infantry Fighting Vehicle"

    24 Oshkosh Defense, "JLTV"

    25 Guertin, Nickolas, "How the Navy is Using Open System Architecture to Revolutionize Capability Acquisition"

    26 Guertin, N, "How the Navy is Using Open System Architecture to Revolutionize Capability Acquisition"

    27 Office of the Deputy Director for Engineering,, "Engineering of Defense Systems Guidebook" Department of Defense 95-, 2022

    28 Office of the Deputy Director for Engineering, "Engineering of Defense Systems Guidebook" Department of Defense 96-, 2022

    29 Office of the Deputy Director for Engineering, "Engineering of Defense Systems Guidebook" Department of Defense 129-, 2022

    30 "Defense Project Management Regulations, Article 62"

    31 Zimmerman, P., "Considerations and examples of a modular open systems approach in defense systems" 16 (16): 373-388, 2019

    32 Beinart, Matthew, "Army Having Success Addressing Industry’s ‘MOSA Hesitancy,’ Top Aviation Acquisition Official Says"

    33 Jeon, G. J., "A Case Study on the Performance Improvement of Small Tactical Vehicles by Changing Technology" 510 : 82-93, 2021

    34 "10 U.S.C 2446a"

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