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      가상화 기반의 재구성 용이한 교전통제 통합시험시뮬레이션 베드 = A Reconfigurable Integration Test and Simulation Bed for Engagement Control Using Virtualization

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      https://www.riss.kr/link?id=A108502755

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      다국어 초록 (Multilingual Abstract)

      Modeling and Simulation(M&S) technology has been widely used to solve constraints such as time, space, safety, and cost when we implement the same development and test environments as real warfare environments to develop, test, and evaluate weapon systems for the last several decades. The integration and test environments employed for development and test & evaluation are required to provide Live Virtual Construction(LVC) simulation environments for carrying out requirement analysis, design, integration, test and verification. Additionally, they are needed to provide computing environments which are possible to reconfigure computing resources and software components easily according to test configuration changes, and to run legacy software components independently on specific hardware and software environments. In this paper, an Integration Test and Simulation for Engagement Control(ITSEC) bed using a bare-metal virtualization mechanism is proposed to meet the above test and simulation requirements, and it is applied and implemented for an air missile defense system. The engagement simulation experiment results conducted on air and missile defense environments demonstrate that the proposed bed is a sufficiently cost-effective and feasible solution to reconfigure and expand application software and computing resources in accordance with various integration and test environments.
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      Modeling and Simulation(M&S) technology has been widely used to solve constraints such as time, space, safety, and cost when we implement the same development and test environments as real warfare environments to develop, test, and evaluate weapon sys...

      Modeling and Simulation(M&S) technology has been widely used to solve constraints such as time, space, safety, and cost when we implement the same development and test environments as real warfare environments to develop, test, and evaluate weapon systems for the last several decades. The integration and test environments employed for development and test & evaluation are required to provide Live Virtual Construction(LVC) simulation environments for carrying out requirement analysis, design, integration, test and verification. Additionally, they are needed to provide computing environments which are possible to reconfigure computing resources and software components easily according to test configuration changes, and to run legacy software components independently on specific hardware and software environments. In this paper, an Integration Test and Simulation for Engagement Control(ITSEC) bed using a bare-metal virtualization mechanism is proposed to meet the above test and simulation requirements, and it is applied and implemented for an air missile defense system. The engagement simulation experiment results conducted on air and missile defense environments demonstrate that the proposed bed is a sufficiently cost-effective and feasible solution to reconfigure and expand application software and computing resources in accordance with various integration and test environments.

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      참고문헌 (Reference)

      1 VMware, "vCenter Server Management Software"

      2 Erik, S. Roberts, "Virtualization of AEGIS: A Study of The Feasibility of Applying Open Architecture Technology to the Surface Navy’s Most Complex Automated Weapon System" Naval Postgraduate School 2011

      3 VMware, "VMware ESXi Bare-metal Hypervisor"

      4 S. Murphy, "U. S. Army Modeling and Simulation Executable Architecture Deployment Cloud Virtualization Strategy" 880-885, 2012

      5 "TENA Architecture Reference Document" The Foundation Initiative 2010 Program Office

      6 Thales, "Surface-to-Air Missile System Simulation :From Design to Qualification"

      7 Simulation Interoperability Standards Organization, "Standard for Real-time Platform Reference Federation Object Model(RPR-FOM) Version2.0"

      8 Charles David Allmont, "Multi-National Distributed Test-bed for Extended Air Defence BMC3I: Past Experiences & Vision for the Future" 2003

      9 "MND-STD-0017, MSAM Digital Information Link (MDIL) Standard"

      10 "MIL-STD-6016F, Department of Defense Interoperability Standard, Tactical Data Link(TDL)LINK-16 Message Standard, United States Department of Defense"

      1 VMware, "vCenter Server Management Software"

      2 Erik, S. Roberts, "Virtualization of AEGIS: A Study of The Feasibility of Applying Open Architecture Technology to the Surface Navy’s Most Complex Automated Weapon System" Naval Postgraduate School 2011

      3 VMware, "VMware ESXi Bare-metal Hypervisor"

      4 S. Murphy, "U. S. Army Modeling and Simulation Executable Architecture Deployment Cloud Virtualization Strategy" 880-885, 2012

      5 "TENA Architecture Reference Document" The Foundation Initiative 2010 Program Office

      6 Thales, "Surface-to-Air Missile System Simulation :From Design to Qualification"

      7 Simulation Interoperability Standards Organization, "Standard for Real-time Platform Reference Federation Object Model(RPR-FOM) Version2.0"

      8 Charles David Allmont, "Multi-National Distributed Test-bed for Extended Air Defence BMC3I: Past Experiences & Vision for the Future" 2003

      9 "MND-STD-0017, MSAM Digital Information Link (MDIL) Standard"

      10 "MIL-STD-6016F, Department of Defense Interoperability Standard, Tactical Data Link(TDL)LINK-16 Message Standard, United States Department of Defense"

      11 C. D. Allmon, "M&S Support to Assessment of Extended Air Defence C2 Interoperability, RTO Technical Report" NATO Modelling and Simulation Group(NMSG) 2004

      12 IEEE, "IEEE Standards for Modeling Simulation(M&S)High Level Architecture(HLA)-Framework and Rules"

      13 IEEE, "IEEE Standards for Distributed Interactive Simulation(DIS)-Communication Service and Profiles"

      14 IABG, "Development of Software and Integration Solutions(Smart Tools)"

      15 M. R. Macedonia, "Cloud Simulation Infrastructure-Delivering Simulation From The Cloud" 50-59, 2014

      16 C. Downing, "Building New Military Infrastructure with Open Virtualization Platforms and Cloud Technologies"

      17 Xiao Song, "A Load Balancing Schemes Using Federate Migration Based on Virtual Machines for Cloud Simulations" Hindawi Publishing Corporation Mathematical Problems in Engineering 2015

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