• 제목/요약/키워드: Combat Vehicle

검색결과 116건 처리시간 0.023초

지상전투차량 취약성 평가를 위한 표적 모델링과 피격선 분석 시스템 (The Target Modeling and The Shot Line Analysis System to Assess Vulnerability of the Ground Combat Vehicle)

  • 유철;장은수;박강;최상영
    • 한국CDE학회논문집
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    • 제20권3호
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    • pp.238-245
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    • 2015
  • Vulnerability assessment is a process to calculate the damage degree of a combat vehicle when the combat vehicle is attacked by an enemy. When the vehicle is hit, it is necessary to analyze the shot line to calculate which components are damaged and judge whether the armor of the vehicle is penetrated by enemy's warhead. To analyze the shot line efficiently, this paper presents the target modeling and the shot line analysis system to assess vulnerability of the ground combat vehicle. This system is easily able to do several functions: 1) the program reads STL files converted from CAD model which is designed by commercial CAD software. 2) It calculates the intersection between triangle of STL mesh and the shot line, and check if the components of the model are penetrated. 3) This program can visualize the results using OpenGL. The vulnerability assessment using the shot line analysis can be used to model the armor of the combat vehicle and arrange the inner components effectively in the early stage of development of the combat vehicle.

화력과 기동의 통합성능을 고려한 미래 전투차량의 해석 기반 설계 프레임웍 연구: (1) 통합성능분석 모델개발 (Model-Driven Design Framework for Future Combat Vehicle Development based on Firepower and Mobility: (1) Integrated Performance Modeling)

  • 임성훈;임우철;민승재;이태희;류재봉;변재정
    • 한국CDE학회논문집
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    • 제19권4호
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    • pp.316-323
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    • 2014
  • This paper proposes the 3D modeling and simulation technique for predicting the integrated performance of combat vehicle. To consider the practical driving and firing condition of a combat vehicle, the full vehicle model, which can define the six degrees-of-freedom of vehicle motion and various firing angles, is developed. The critical design parameters such as the stiffness and damping coefficient of suspension system are applied to construct the analysis model of vehicle. A simple ballistic model, which incorporates the empirical interior ballistic model and the point mass trajectory model, is built to estimate the firing range and the firing recoil force. To predict the integrated performance and analyze the effect of system parameters, MATLAB/SIM-ULINK model of a combat vehicle for performing the real time simulation is also developed. Several simulation tests incorporating the road bump and the firing recoil force are presented to confirm the effectiveness of the proposed vehicle model.

무인전투차량 요구사항분석 연구: 원격통제 및 자율주행 중심으로 (A Study on Requirement Analysis of Unmanned Combat Vehicles: Focusing on Remote-Controlled and Autonomous Driving Aspect)

  • 김동우;최인호
    • 시스템엔지니어링학술지
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    • 제18권2호
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    • pp.40-49
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    • 2022
  • Remote-controlled and autonomous driving based on artificial intelligence are key elements required for unmanned combat vehicles. The required capability of such an unmanned combat vehicle should be expressed in reasonable required operational capability(ROC). To this end, in this paper, the requirements of an unmanned combat vehicle operated under a manned-unmanned teaming were analyzed. The functional requirements are remote operation and control, communication, sensor-based situational awareness, field environment recognition, autonomous return, vehicle tracking, collision prevention, fault diagnosis, and simultaneous localization and mapping. Remote-controlled and autonomous driving of unmanned combat vehicles could be achieved through the combination of these functional requirements. It is expected that the requirement analysis results presented in this study will be utilized to satisfy the military operational concept and provide reasonable technical indicators in the system development stage.

차륜형 대공포 냉방장치 성능개선 연구 (Study on Improvement of Air Conditioning Units for Anti Aircraft Gun Wheeled Vehicle)

  • 전기현;이동희;이부환
    • 대한기계학회논문집B
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    • 제37권12호
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    • pp.1099-1103
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    • 2013
  • 과거의 무기체계는 체계의 목적과 비용 등의 문제로 운용환경에 대한 관심이 부족하였으며, 특히 냉방장치가 미탑제된 체계가 많이 개발되었다. 근래 개발되는 무기체계는 고도의 정밀조준 및 고감도 시스템으로 진화함에 따라 무기체계를 효과적으로 제어하기 위하여 운용자의 운용환경도 중요한 요소로 대두되고 있다. 현재의 무기개발자들은 대부분 통합형 환경제어장치를 장착하도록 설계하고 있다. 본 연구에서는 장갑차량의 운용환경 및 설계조건을 바탕으로 한국군의 운용환경에 적합한 냉방기 및 냉방 부하를 검토하고 시제품의 냉방성능 시험결과가 목표성능에 미달되어 이에 대해 개선내용 및 검토결과를 기술하였다.

무인전투차량 기술개발 동향조사 및 분석 (A Study on Trend of Technology Development for Unmanned Combat Ground Vehicle)

  • 박승
    • 한국산학기술학회논문지
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    • 제10권7호
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    • pp.1735-1739
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    • 2009
  • 지상무인 전투체계에서 요구되는 원천, 핵심기술은 해외 선진 국가들과의 치열한 경쟁이 예상된다. 따라서 주요 국가의 무인체계 기술개발현황을 분석하였으며, 분석 대상은 1998년부터 2008년까지 미국, 일본, 유럽, 캐나다, 이스라엘 등에 출원된 현황을 기준하였다. 주요 선진국의 특허맵과 전문가 의견을 수렴하여 국가별 기술 수준, 역점분야와 공백기술, 시장력 등을 분석하였으며, 앞으로 발전 가능성이 예상되는 기술과 우리나라가 중점 개발하여야할 분야 등을 제시하였다.

전투차량의 피해 정도를 계산하기 위한 수치해석적 접근법 (Numerical Analysis Approach to Calculate the Damage Degree of the Combat Vehicle)

  • 조아현;박강;김건인
    • 한국CDE학회논문집
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    • 제22권2호
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    • pp.101-109
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    • 2017
  • In order to reduce the number of casualties by improving the survivability of the combat vehicle, the vulnerability analysis of the combat vehicle is needed. However, the actual test for the vulnerability analysis requires large experimental space and expensive equipment costs long time and large expense. It is needed to develop a new method that can replace the actual test. In the paper, we suggested a new approach to analyzing the vulnerability using the M&S method instead of the actual test. To analyze the vulnerability, the shot line analysis is performed to find out which part is penetrated by the bullet. The component of the parts is simplified to "Single-Target", "Double-Target", "Air gapped-Target" and can be performed the penetration analysis using the ANSYS Explicit Dynamics. The penetration depth and the residual velocity of the bullet are calculated by analyzing penetration of each part of the combat vehicle. The penetration data calculated the penetration analysis can be used to define the damage level of the combat vehicle. The purpose of this paper is to collect penetration data for various targets and bullets. And "7.62mmAP" is used as the bullet, "7075-T6" is used as a target.

무기탑재 전투차량의 임무부하분석을 위한 OMS/MP 방법론과 적용 연구 (A Study on OMS/MP of a Combat Vehicle Mounted with Weapon Systems for Power and Energy Control Strategy Development and its Application)

  • 유삼현;이종우;이민형;이승민;장명언
    • 한국군사과학기술학회지
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    • 제16권1호
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    • pp.48-55
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    • 2013
  • To obtain the requirements of capability and analyze mission loads for weapon systems which are in process of development, Operational Mode Summary/Mission Profile(OMS/MP) should be documented in advance. In this paper, we have proposed a systematic and practical OMS/MP model processes of a weapon mounted combat vehicle for analyzing power and energy strategy. The wartime and peacetime OMS/MP of a hybrid wheeled combat vehicle which is mounted with an anti-tank guided weapon(ATGW) is also presented as its application.

임무계획 및 전역경로계획에 기반한 무인전투차량의 운용자 인터페이스 구현 (User Interface for Unmanned Combat Vehicle Based on Mission Planning and Global Path Planning)

  • 이호주;이영일;박용운
    • 한국군사과학기술학회지
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    • 제12권6호
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    • pp.689-696
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    • 2009
  • In this paper, a new user interface for unmanned combat vehicle(UCV) is developed based on the mission planning and global path planning. In order to complete a tactical mission given to an UCV, it is essential to design an effective interface scheme between human and UCV considering changing combat environment and characteristics of the mission. The user interface is mainly composed of two parts, mission planning and global path planning, since they are important factors to accomplish combat missions. First of all, mission types of UCV are identified. Based on mission types, the concept of mission planning for UCVs is presented. Then a new method for global path planning is devised. It is capable of dealing with multiple grid maps to consider various combat factors so that paths suitable for the mission be generated. By combining these two, a user interface method is suggested. It is partially implemented in the Dog-horse Robot of ADD and its effectiveness is verified.

화력과 기동의 통합성능을 고려한 미래 전투차량의 해석 기반 설계 프레임웍 연구: (2) 통합최적설계 (Model-Driven Design Framework for Future Combat Vehicle Development based on Firepower and Mobility: (2) Integrated Design Optimization)

  • 임우철;임성훈;김신유;민승재;이태희;류재봉;변재정
    • 한국CDE학회논문집
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    • 제19권4호
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    • pp.324-331
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    • 2014
  • In the design of a combat vehicle, various performances such as firepower, mobility and survivability, etc., should be considered. Furthermore, since these performances relate to each other, design framework which can treat an integrated system should be employed to design the combat vehicle. In this paper, we use empirical interior ballistic and 3D combat vehicle analyses for predicting firepower and mobility performances which are developed in previous study (1) integrated performance modeling. In firepower performance, pitch and roll angle by sequential firing are considered. In mobility performance, vertical acceleration after passing through a bump is regarded. However, since there are many design variables such as mass of vehicle, mass of suspension, spring and damping coefficient of suspension and tire, geometric variables of vehicle, etc., for firepower and mobility performance, we utilize analysis of variance and quality function deployment to reduce the number of design variables. Finally, integrated design optimization is carried out for integrated performance such as firepower and mobility.

하이브리드 전투차량의 기능안전성 적용 연구 (Research on Application of Functional Safety for Developing Combat Hybrid Electric Vehicles)

  • 장교근;이윤복
    • 한국군사과학기술학회지
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    • 제15권5호
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    • pp.543-549
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    • 2012
  • Hybrid electric propulsion systems are expected as future primary combat platforms because the systems can supply enough electric power, easily locate components inside vehicles, and maneuver without undesired noise. However, increasing electric/electronic/software usage causes abnormal failure patterns which have not been noticeable in conventional automotive. Recently, the functional safety standard for road vehicles were enacted and vehicle manufacturers request their components which satisfy standardized quality. This research analyzes functional safety standards(IEC 61508 and ISO 26262) and compares the standards for road vehicles with military standards of system safety. Strategies to apply functional safety in the combat hybrid electric vehicle are scrutinized.