• 제목/요약/키워드: Naval Engagement

검색결과 35건 처리시간 0.021초

Case study of detection and maneuvering performance of naval ships using engagement simulation of engineering level

  • Jeong, Dong-Hoon;Roh, Myung-Il;Ham, Seung-Ho
    • Ocean Systems Engineering
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    • 제7권3호
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    • pp.247-273
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    • 2017
  • Many different engagement situations require naval ships to achieve some level of effectiveness. The performance of the naval ships is very important for such effectiveness. There have been many studies that analyze the effectiveness and the performance. The former are largely related to engagement level simulations, while the latter are largely related to engineering level simulations. However, there have been few studies that consider both the engagement level and the engineering level at the same time. Therefore, this study presents three case studies using engagement simulation of the engineering level to check the performance of the related parameters. First, detection performance simulations are carried out by changing the specifications of the passive sonars of a submarine in different scenarios. Maneuvering performance simulations are carried out by changing the specification of the hydroplanes of a submarine in different scenarios. Lastly, in order to check whether or not our forces would succeed in attacking enemy forces, we perform an engagement simulation with various naval ship models that consist of several engineering level models, such as command systems, weapon systems, detection systems, and maneuver systems. As a result, the performance according to the specifications of the naval ships and weapons is evaluated.

Engagement-Scenario-Based Decoy-Effect Simulation Against an Anti-ship Missile Considering Radar Cross Section and Evasive Maneuvers of Naval Ships

  • Kim, Kookhyun
    • 한국해양공학회지
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    • 제35권3호
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    • pp.238-246
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    • 2021
  • The survivability of a naval ship is the ability of the ship and its onboard systems to remain functional and continue a designated mission in man-made hostile environments. A passive decoy system is primarily used as a weapon system for improving the survivability of a naval ship. In this study, an engagement scenario-based simulation program was developed for decoy effectiveness assessments against an anti-ship missile (ASM), which tracks a target with sea-skimming and active radar homing. The program can explain the characteristics of a target ship, such as the radar cross section and evasive maneuvers, as well as the operational performance of the onboard decoy system, the guidance method of the ASM, and the engagement environment's wind speed and direction. This paper describes the theory and formulations, configuration, and user interface of the developed program. Numerical examples of a decoy effect assessment of a virtual naval ship against an ASM are presented.

해상 전자전체계 조우 HILS 연구 (A Research on Naval Electronic Warfare System Engagement HILS Technology)

  • 신동조;이정훈;류시찬
    • 한국군사과학기술학회지
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    • 제13권5호
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    • pp.785-792
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    • 2010
  • This paper on the Research of Naval Electronic Warfare System HILS(Hardware In the Loop System) describes the EW engagement HILS construction method for evaluation of the operational concept analysis on active RF Decoy in staying in the air and the deceit ability to anti-ship missile seeker. We obtain the EW M&S technology of EW engagement HILS and EW efficiency analysis from this project. This Naval Electronic Warfare System HILS technology will support Active Decoy Development Project and any other HILS of EW weapon in KOREA ARMY/NAVY/AIR FORCE.

전구급 교전분석을 위한 함정 취약성 평가모델 개발 (Development of a Vulnerability Assessment Model for Naval Ships on a Theater Engagement Analysis)

  • 이성균;고진용;김창환;유승기
    • 한국시뮬레이션학회논문지
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    • 제30권1호
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    • pp.1-9
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    • 2021
  • 해상에서 임무를 수행하는 함정은 적의 무장 및 위협에 대응하며 임무를 완수해야 한다. 최근 현대전에서는 적 무장의 치명도가 높아짐에 따라 함정의 생존성이 중요시되고 있다. 함정의 생존성은 전투 상황 하에서 함정이 생존할 수 있는 정도를 지표화 한 것으로, 일반적으로 피격성, 취약성, 그리고 회복성의 세 가지 요소로 구분된다. 함정의 생존성에 대한 연구는 지속적으로 수행되어 왔으며, 생존성의 요소 중 취약성에 대한 국내 연구가 활발히 진행되고 있다. 본 논문에서는 M&S기법을 활용하여 전구급 교전분석을 위한 함정 취약성 평가모델을 개발하였다. 전구급 교전분석을 위해 확률적 접근이 아닌 결정형 전투평가 논리를 적용하였으며, 각 탑재시스템의 특성을 반영하여 피해평가 모의논리를 보다 구체적으로 반영하였다. 각 체계별 탑재장비들의 대표 상태 지수를 도입하여 정량화 된 함정의 상태를 확인하였다. 모의논리 반영여부를 확인하기 위해, 가상의 피해상황들을 설정하고 각 상황에서의 선체 및 탑재장비의 손상률을 분석함으로써 평가모델의 타당성을 확인하였다.

해군무기체계 수중교전 모델 라이브러리 개발 (Development of Underwater Warfare Models on the Naval Weapon Systems)

  • 한승진;이민규
    • 한국시뮬레이션학회논문지
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    • 제22권4호
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    • pp.1-9
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    • 2013
  • 국방과학연구소는 해군 전투실험을 위한 시뮬레이션 통합개발환경(QUEST)을 개발하였으며 본 논문은 QUEST의 수중교전 시뮬레이션을 응용을 위한 해군무기체계 모델 라이브러리 개발에 대하여 기술한다. 모델은 기본적으로 함정 및 무장체계 간의 수중교전 효과도 및 전술 개발 목적으로 개발되었다. 수중교전 임무공간과 기존 운용모델 기능 분석을 통하여 표준 모델구조를 정립하고 구성 컴포넌트를 개발하였다. 각각의 컴포넌트는 무기체계 구성부의 기능을 잘 정의한 표준화된 체계, 부체계, 알고리듬 모델이며 모델간 표준 인터페이스를 정의하였다. 모델 라이브러리를 이용하여 사용자는 최소한의 도메인지식으로 기존 모델을 재사용하고 새로운 모델을 효율적으로 조립가능하며 사용자간에 모델을 공유하고 협업할 수 있다.

취약성 평가 기반 함정 임무수행능력 측정 방법: 해군 교전급 분석모델을 중심으로 (A Mission Capability Measuring Methodology of Warship based on Vulnerability Assessment: Focused on Naval Engagement Level Analysis Model)

  • 양정관;김봉석;최봉완;김종수
    • 산업경영시스템학회지
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    • 제46권4호
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    • pp.218-228
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    • 2023
  • Maintaining sea superiority through successful mission accomplishments of warships is being proved to be an important factor of winning a war, as in the Ukraine-Russia war. in order to ensure the ability of a warship to perform its duties, the survivability of the warship must be strengthened. In particular, among the survivability factors, vulnerability is closely related to a damage assessment, and these vulnerability data are used as basic data to measure the mission capability. The warship's mission capability is usually measured using a wargame model, but only the operational effects of a macroscopic view are measured with a theater level resolution. In order to analyze the effectiveness and efficiency of a weapon system in the context of advanced weapon systems and equipments, a warship's mission capability must be measured at the engagement level resolution. To this end, not the relationship between the displacement tonnage and the weight of warheads applied in the theater level model, but an engagement level resolution vulnerability assessment method that can specify physical and functional damage at the hit position should be applied. This study proposes a method of measuring a warship's mission capability by applying the warship vulnerability assessment method to the naval engagement level analysis model. The result can be used as basic data in developing engagement algorithms for effective and efficient operation tactics to be implemented from a single unit weapon system to multiple warships.

이산사건 및 이산시간 혼합 표준모델구조를 활용한 수중운동체 정상잠항 시뮬레이션 (The Normal Diving Simulation of the Underwater Vehicle Using the Standard Model Architecture for the Combined Simulation of Discrete Event System and Discrete Time System)

  • 손영조;이현진;함승호;이효광;김태완;이규열;한순흥;나영인
    • 대한조선학회논문집
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    • 제45권6호
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    • pp.656-668
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    • 2008
  • When it comes to design and acquire underwater vehicles such as a submarine and a torpedo according to the process of SBA(Simulation Based Acquisition)/SBD(Simulation Based Design), it is necessary to predict the performance of interest precisely and to perform the test over and over again using the M&S(Modeling and Simulation) of the engineering and the engagement level. In this paper, we research the DEVS(Discrete Event System Specification) and DTSS(Discrete Time System Specification) formalism based standard model architecture for the underwater vehicle which can support both the heterogeneous level of the M&S(Engineering/Engagement) and the different system of the M&S(Discrete Event System and Discrete Time System). To validate this standard modeling architecture, we apply it to the submarine normal diving simulation.

협동교전능력(CEC) 체계구축을 위한 해상작전 적용효과 분석 방법론 (A Methodology for Analyzing Effects of the Cooperative Engagement Capability System Applied to Naval Operations)

  • 정용태;정봉주;최봉완;임동순
    • 산업경영시스템학회지
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    • 제42권1호
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    • pp.95-105
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    • 2019
  • The Cooperative Engagement Capability (CEC) System produces a synergy between the sensors and shooters that are used on various platforms by integrating them. Even the US Navy has been recently adopting the CEC system that maximizes the effectiveness of the air defense operations by efficiently coordinating the dispersed air defense assets. The Navy of other countries are conducting research studies on the theory and application methods for the CEC system. The ROK Navy has limited air defense capabilities due to its independent weapons systems on battle ships. Therefore, the ROK Navy is currently going through a phase where research on proving the validity of building the CEC system because it will provide a way to overcome the limit of the platform based air defense capability. In this study, our goal is to propose methods that maximize the air defense capability of ROK Navy, identify the available assets for constructing the CEC system, and estimate effects of the CEC system when it is applied to the naval operations. In addition, we will provide a simple model that was developed to estimate these effects and a case study with virtual data to demonstrate the effects of the system when it is applied to the naval operations. The research result of this study will provide a way for building the basis of the Korean CEC system.

TBMD를 위한 협동교전 기능아키텍처 도출 (Derivation of Functional Architecture of Cooperative Engagement for a Theater Ballistic Missile Defense)

  • 권용수;엄진욱;정소연;이용욱;최관선
    • 정보화연구
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    • 제9권4호
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    • pp.391-400
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    • 2012
  • 본 연구는 전구 탄도미사일 방어(TBMD)를 위한 협동교전의 기능아키텍처 도출에 관한 논문이다. TBMD는 다층으로 구성되며 네트워크 기반의 센서체계, 슈터체계, 그리고 전장관리체계로 구성되는 복합시스템이다. 협동교전능력은 대표적인 실시간 전장관리체계이며, 협동교전능력의 핵심기능은 협동교전이다. 협동교전은 두 개 이상의 분산된 자산의 통합을 통해 얻어진 시너지 효과로 위협을 제거하는 전투개념이다. 이러한 관점에서 본 논문은 개념 분석을 통해 TBMD의 협동교전 기능아키텍처를 제시하였으며, 이는 협동교전 기반의 TBMD 전투체계를 개발하기 위한 선행연구로서 수행되었다.

교전급 수중운동체 DEVS-HLA 시뮬레이션을 위한 전술통제체계의 DEVS 기반 상세 구현 방법 (The DEVS-based Detailed Implementation Method of the Command and Fire Control System for the Underwater Vehicle DEVS-HLA Simulation in the Engagement Level)

  • 손명조;차주환;김태완;이규열;나영인
    • 대한조선학회논문집
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    • 제47권4호
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    • pp.628-645
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    • 2010
  • To perform the engagement level simulation between the underwater vehicle model and the surface model those are constituted with various systems/ sub-systems, we implemented four different federates as a federation according to the IEEE 1516 HLA (High Level Architecture) protocol that is the international standard in the distributed simulation. Those are CFCS (Command and Fire Control System) federate, motion federate, external entities (torpedos, countermeasure and surfaceship) federate, and visualization federate that interacts with OSG (Open Scene Graph)-based visualization rendering module. In this paper, we present the detailed method about the model constitution for discrete event simulation in the distributed environment. For the sake of this purpose, we introduce the DEVS (Discrete Event System Specification)-HLA-based modeling method of the CFCS federate that reflects not only the interations between models, but also commands from user and tactics manager that is separated from the model. The CFCS federate makes decisions in various missions such as the normal diving, the barrier misision, the target motion analysis, the torpedo launch, and the torpedo evasion. In the perspective of DEVS modeling, the CFCS federate is the coupled model that has the tactical data process model, command model and fire control model as an atomic model. The message passing and time synchronization with other three federates are settled by the $m\ddot{a}k$ RTI (Runtime Infrastructure) that supports IEEE 1516. In this paper, we provides the detailed modeling method of the complicated model that has hierarchical relationship such as the CFCS system in the submarine and that satisfies both of DEVS modeling method for the discrete event simulation and HLA modeling method for the distributed simulation.