• 제목/요약/키워드: Reconnaissance Robot

검색결과 33건 처리시간 0.022초

다양한 험지 정찰을 위한 6족 보행 로봇 개발 (Development of a Hexapod Robot for Multi-terrain Reconnaissance)

  • 임승용;김종형;김형직
    • 한국생산제조학회지
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    • 제24권6호
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    • pp.667-674
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    • 2015
  • This paper describes the development of a prototype hexapod robot with six circular legs to overcome a variety of challenging terrains. The legs of the robot are very important for stability during walking, which are analyzed for determining the optimal design parameters through CAE tools. Its control system consists of three types of sensors, microprocessors, and communication modules for PC interface. The entire operation of the robot can be controlled and monitored using a PC. The experimental operations for three different roads verified the feasibility of the prototype robot for carrying out reconnaissance on multi terrain. In the near future, the prototype robot can be used for a military purpose of detecting and informing a potential risk in advance.

공벌레의 보행패턴 분석을 통한 소형로봇의 주행 메커니즘 설계 (Design of the Locomotive Mechanism by Analysis on Behavior of Pill Bugs for a Small Robot)

  • 박종원;김홍진;김영국;김수현
    • 제어로봇시스템학회논문지
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    • 제18권2호
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    • pp.81-86
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    • 2012
  • Reconnaissance robots can reduce the danger of hazardous places by providing information before human personnel take action. For the usage, robot platform should be small and light. However, this fact leads to a scaling issue with terrain that landscape poses a huge obstacle for the vehicle. The problem can be solved by the inspiration of nature. This paper presents design of the locomotive mechanism inspired by Pill bugs. The mechanism was designed by the principles of a pill bug's locomotion and experiments were conducted to validate the mechanism.

발사형 정찰로봇을 위한 파단형 보호체 개발 (Development of Fracture-Type Protector for a Launching Reconnaissance Robot)

  • 강봉수;조윤호;최정남
    • 대한기계학회논문집A
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    • 제36권11호
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    • pp.1473-1478
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    • 2012
  • 본 논문은 원거리에 떨어진 작전지역으로 정찰로봇을 발사하여 투하하기 위해서 필요한 파단형 보호체에 대한 개발내용을 제시한다. 실제 전장에서의 활용성을 높이기 위해 기존 외피 전개를 위한 기구사용을 배제하고 체결부의 파단에 의해서 보호체의 외피가 개방되는 방식을 채택하여 소형, 경량을 이루었다. 보호체와 정찰로봇의 유한요소 모델링을 통해서 주어진 하중조건에 맞추어 체결부의 파단이 이루어지는지 전산모의실험을 수행하였으며, 낙하시험기를 이용한 충격실험을 통해서 충돌에 대한 보호체의 충격흡수성능을 분석하였다. 실제 외부환경에서의 100m 발사시험을 통해서 제안된 보호체가 정찰로봇을 탑재하여 정해진 지점으로 비행 도착한 후 안전하게 정찰로봇을 이탈시킴을 확인하였다.

A New Driving Mechanism to Allow a Rescue Robot to Climb Stairs

  • Lim, Sung-Kyun;Park, Dong-II;Kwak, Yoon-Keun
    • International Journal of Precision Engineering and Manufacturing
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    • 제8권3호
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    • pp.3-7
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    • 2007
  • There have been numerous studies directed toward the development of driving mechanisms for off-road mobility and rescue robots. To achieve surveillance, reconnaissance, and rescue, it is necessary for robots to have a driving mechanism that can handle off-road environments, We propose a new type of single-track driving mechanism with a variable geometry for a rescue robot, This mechanism has a symmetric configuration so that the robot can advance in two directions and also remain operable when overturned. By transforming its geometry, the robot can reduce energy consumption in steering and rotating as well as maximize its ability to climb obstacles such as stairs. The robot is also designed to have a compact size and low center of gravity to facilitate driving when on a set of stairs. In this paper, we analyzed the design parameters of the robot for the four phases of climbing stairs and determined the specifications needed to enhance its adaptability.

미래전투에 대비한 로봇 요구분석과 개발방향에 대한 연구 (A Study on the Direction of Development and Need Analysis on Robot Providing for Future Combat)

  • 권오상
    • 한국군사과학기술학회지
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    • 제8권2호
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    • pp.5-13
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    • 2005
  • The use of robot is no longer limited in the industrial scene, and becoming expanded toward many aspects of human life. Especially, military robot closely concerned with our lives seems to advance more and more in the future. As a need analysis for developing military robot, this project conducted a poll about Unmanned Reconnaissance Robot, and on the basis of the result, I suggested 3 directions of developing UGV(Unmanned Ground Vehicle) suitable to strategic environment of Korea.

로봇 운용성 시뮬레이터(ROSim)의 군사로봇 운용성 평가에 실험적 적용 연구 (Experimental Application of Robot Operability Simulator (ROSim) to the Operability Assessment of Military Robots)

  • 최상영;박우성
    • 로봇학회논문지
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    • 제13권3호
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    • pp.151-156
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    • 2018
  • Military robots are expected to play an important role in the future battlefield, and will be actively engaged in dangerous, repetitive and difficult tasks. During the robots perform the tasks a human operator controls the robots in a supervisory way. The operator recognizes battlefield situations from remote robots through an interface of the operator control center, and controls them. In the meantime, operator workload, controller interface, robot automation level, and task complexity affect robot operability. In order to assess the robot operability, we have developed ROSim (Robot Operational Simulator) incorporating these operational factors. In this paper, we introduce the results of applying ROSim experimentally to the assessment of reconnaissance robot operability in a battle field. This experimental assessment shows three resulting measurements: operational control workload, operational control capability, mission success rate, and discuss its applicability to the defense robot research and development. It is expected that ROSim can contribute to the design of an operator control center and the design analysis of a human-robot team in the defense robot research and development.

단일 궤도를 갖는 가변형 로봇 바퀴 구조 (Variable Shapes Single-Tracked of Belt Type Wheel Mechanism)

  • 김지홍;이창구
    • 제어로봇시스템학회논문지
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    • 제15권2호
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    • pp.198-202
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    • 2009
  • Urban Search and Rescue (USAR) involves locating, rescuing (extricating), and medically stabilizing victims trapped in confined spaces. In this paper we state the current approach to USAR, address the limitations and discuss the way for moving in rugged topography. To achieve objectives such as surveillance, reconnaissance, and rescue, it is necessary to develop a driving mechanism that can handle rugged geographical features. We propose a new type of driving mechanism for a rescue robot that has a variable shape single-track. By using a variety shapes, it can get the gain of steering and rotating and the ability to overcome stairs. In this paper, we analyzed the design parameters for making variable transform shapes and determined the specifications of the robot to enhance adaptability to stairs.

소형 무인 로봇의 소음 측정법 개발 및 측정 장소에 따른 상관성 분석 (Noise Measurement Method Development and Correlation Analysis According to Measurement Location of Small Unmanned Robot)

  • 옥진규;박은주;박민수;이명천
    • 한국군사과학기술학회지
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    • 제20권5호
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    • pp.633-638
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    • 2017
  • The small unmanned robot developed in this paper can perform tasks such as surveillance and reconnaissance in the battle field. The noise generated during the operation of the robot may expose the operation area. Therefore, in this study, we developed a method to quantitatively measure the noise of the developed small unmanned ground robot. The criteria for noise measurement in indoor and outdoor are presented. It was used for statistical verification method to verify the reliability of the developed noise measurement method. The noise was measured at different places, and the correlation was analyzed. Thus, we proposed a method to predict the noise level in the operation area where the robot is operated by the noise test data measured during the development process.

휠-트랙 하이브리드 모바일 로봇 플랫폼의 지형 적응성 및 사용자 친화성 향상을 위한 원격 조종기 설계와 개발 (Design and Development of Terrain-adaptive and User-friendly Remote Controller for Wheel-Track Hybrid Mobile Robot Platform)

  • 김윤구;안진웅;곽정환;문전일
    • 제어로봇시스템학회논문지
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    • 제17권6호
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    • pp.558-565
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    • 2011
  • Various robot platforms have been designed and developed to perform given tasks in a hazardous environment for surveillance, reconnaissance, search and rescue, etc. We considered a terrain-adaptive and transformable hybrid robot platform that is equipped with rapid navigation capability on flat floors and good performance in overcoming stairs or obstacles. The navigation mode transition is determined and implemented by adaptive driving mode control of the mobile robot. In order to maximize the usability of wheel-track hybrid robot platform, we propose a terrain-adaptive and user-friendly remote controller and verify the efficiency and performance through its navigation performance experiments in real and test-bed environments.

도심지형 최적주행을 위한 휠.무한궤도 하이브리드형 모바일 로봇 플랫폼 및 메커니즘 (Wheel &Track Hybrid Mobile Robot Platform and Mechanism for Optimal Navigation in Urban Terrain)

  • 김윤구;김진욱;곽정환;홍대한;이기동;안진웅
    • 로봇학회논문지
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    • 제5권3호
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    • pp.270-277
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    • 2010
  • Various robot platforms have been designed and developed to perform given tasks in a hazardous environment for the purpose of surveillance, reconnaissance, search and rescue, and etc. We have considered a terrain adaptive hybrid robot platform which is equipped with rapid navigation on flat floors and good performance on overcoming stairs or obstacles. Since our special consideration is posed to its flexibility for real application, we devised a design of a transformable robot structure which consists of an ordinary wheeled structure to navigate fast on flat floor and a variable tracked structure to climb stairs effectively. Especially, track arms installed in front side, rear side, and mid side are used for navigation mode transition between flatland navigation and stairs climbing. The mode transition is determined and implemented by adaptive driving mode control of mobile robot. The wheel and track hybrid mobile platform apparatus applied off-road driving mechanism for various professional service robots is verified through experiments for navigation performance in real and test-bed environment.