• 제목/요약/키워드: Robot joint

검색결과 890건 처리시간 0.027초

다관절 로봇 제어를 위한 교육용 소프트웨어 연구 (A Study on Education Software for Controling of Multi-Joint Robot)

  • 김재수;손현승;김우열;김영철
    • 정보교육학회논문지
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    • 제12권4호
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    • pp.469-476
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    • 2008
  • 다관절 로봇 교육 효과의 향상을 위해서는 제어 소프트웨어를 통해 로봇의 동작을 쉽게 개발할 수 있어야 한다. 기존의 다관절 로봇 개발기법은 매우 복잡한 구현을 교육해야하지만, 우리의 도구는 로봇의 동작을 쉽게 하여 제어나 움직임에 대한 창의적인 활동을 가능하게 한다. 본 논문에서 교육용 다관절 로봇의 동작 제어를 쉽고 빠르게 프로그램화하기 위해서, 모션 생성 도구를 개발하였다. 우리는 도구를 통해 정확하고 쉽게 프로그램을 교육하고자 한다. 본 논문에서 제안한 모션 생성 도구는 기존의 복잡한 언어 제어 프로그램 방식을 탈피하였을 뿐만 아니라 사용자 편의성 중심이라는 GUI(Graphic User Interface) 방식보다도 쉽게 로봇 제어를 할 수 있었다. 또한 편리한 로봇 동작 구현은 물론 교육적으로 활용되는 마이크로프로세서 실험 장치에서도 적용이 가능하다.

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유연성 관절 로봇 매니퓰레이터 적응 제어 (Adaptive control of flexible joint robot manipulators)

  • 신진호;이주장
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1992년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 19-21 Oct. 1992
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    • pp.260-265
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    • 1992
  • This paper presents an adaptive control scheme for flexible joint robot manipulators. This control scheme is based on the Lyapunov direct method with the arm energy-based Lyapunov function. The proposed adaptive control scheme uses only the position and velocity feedback of link and motor shaft. The adaptive control system of flexible joint robots is asymptotically stable regardless of the joint flexibility value. Therefore, the assumption of weak joint ealsticity is not needed. Also, joint flexibility value is unknown. Simulation results are presented to show the feasibility of the proposed adaptive control scheme.

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생체모방 공중로봇의 날개 구조 모델링 (The wing structure modeling of the bioinspired aerial robot)

  • 최연호;조내수;정정은;권우현;이동하
    • 한국태양에너지학회 논문집
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    • 제32권spc3호
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    • pp.269-274
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    • 2012
  • The research of the biological mimics robot which utilizes the operation of the organism is progressed on the ground, aerial, and underwater robot sector. In the field of flying robot, the research for implementing the wing movement structure of the bird and insect is progressed. The joint structure for the wing movement of the bird is implemented. The operation of the wing is simulated. For this purpose, by using the Matlab/Simulink, the joint structure of the wing is modelled. The joint movement of the wing is tested through the simulation.

A Study on the Multi-Joint Rehabilitation System of an Industrial Robot

  • Lee, Yong-Seok;Jang, Jae-Ho;Sim, Hyung-Joon;Han, Chang-Soo;Han, Jung-Soo
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2004년도 ICCAS
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    • pp.92-95
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    • 2004
  • This study proposes an industrial rehabilitation robot system which can exercise two joints in 3 dimensional spaces. The robot kinematics analysis and the results of studies on each joint for the rehabilitation robot could verify possibility of rehabilitation motion to exercise a joint. The force and torques sensor not only measures a rehabilitation performance of subjects between the abnormal limb and the manipulator, but also carries out an important function of safety device to prevent accidents. Also, limit sensors and emergency stop switch are used for high safety in this system. In this real test, the possibility of rehabilitation robot system is evaluated by C&R ARM I which is similar to upper-limb.

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로봇 매니퓰레이터의 독립관절 적응퍼지슬라이딩모드 제어 (Independent point Adaptive Fuzzy Sliding Mode Control of Robot Manipulator)

  • 김영태;이동욱
    • 한국정밀공학회지
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    • 제19권2호
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    • pp.126-132
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    • 2002
  • Robot manipulator has highly nonlinear dynamics. Therefore the control of multi-link robot arms is a challenging and difficult problem. In this paper an independent joint adaptive fuzzy sliding mode scheme is developed leer control of robot manipulators. The proposed scheme does not require an accurate manipulator dynamic model, yet it guarantees asymptotic trajectory tracking despite gross robot parameter variations. Numerical simulation for independent joint control of a 3-axis PUMA arm will also be included.

Sugeno형태 퍼지 논리를 이용한 로봇 매니플레이터의 독립관절 적응제어 (Independent Joint Adaptive Control of Robot Manipulator Using the Sugeno-type of Fuzzy Logic)

  • 김영태
    • 한국정밀공학회지
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    • 제20권6호
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    • pp.55-61
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    • 2003
  • Control of multi-link robot arms is a challenging and difficult problem because of the highly nonlinear dynamics. Independent joint adaptive scheme is developed for control of robot manipulators based on Sugeno-type of fuzzy logic. Fuzzy logic system is used to approximate the coupling forces among the joints, coriolis force, centrifugal force, gravitational force, and frictional forces. The proposed scheme does not require an accurate manipulator dynamic, and it is proved that closed-loop system is asymptotic stable despite the gross robot parameter variations. Numerical simulations for three-axis PUMA robot are included to show the effectiveness of controller.

10자유도 이족 보행로봇 운동식의 모텔링 (Modeling for The Dynamics of 10 D.O.F Biped Robot)

  • 최형식;이호식;박용헌;전대원
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2000년도 제15차 학술회의논문집
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    • pp.343-343
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    • 2000
  • The conventional actuators with the speed reducer had weakness in supporting the weight of the body and leg itself. To overcome this, a new four bar link mechanism actuated by the ball screw was proposed. Using this, we developed a new type of 10 D.O.F biped robot. The dynamics model of the biped robot is investigated in this paper. In the modeling process, the robot dynamics are expressed in the joint coordinates using the Euler-Lagrange equation. Then, they are converted in to the sliding joint coordinates, and joint torques are expressed in the force along the sliding direction of the ball screw. To test modeling of the robot, a computer simulation was performed.

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이족 보행 로봇의 관절부위 유연특성 시뮬레이션에 관한 연구 (A Study on Computer Simulation of Joint Compliance for a Biped Robot)

  • 이기주;박중경;임시형;임홍재
    • 한국소음진동공학회논문집
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    • 제17권10호
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    • pp.907-911
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    • 2007
  • Compliance of joints must be considered when we analyze dynamics of a multi-body system. If the virtual model for CAE(computer aided engineering) analysis does not consider compliance, the result of CAE analysis can be very different from the actual experimental result. Especially in a biped walking robot, the robot may lose walking stability due to the compliance in joints of a walking robot. This paper proposed a method applying a compliance of joints in the biped walking robot to a virtual model. Also, through the 3-D displacement measurement using a laser tracker, it was demonstrated that the virtual model considering the joint compliance could effectively simulate the nonlinear motion of the real model.

고관절 구동 방식을 갖는 바퀴-다리형 로봇과 지면 간 접촉점에서의 마찰계수 추정 (Estimation of the Frictional Coefficient of Contact Point between the Terrain and the Wheel-Legged Robot with Hip Joint Actuation)

  • 신동환;안진웅;문전일
    • 로봇학회논문지
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    • 제6권3호
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    • pp.284-291
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    • 2011
  • This paper presents the estimation of the frictional coefficient of the wheel-legged robot with hip joint actuation producing maximum tractive force. Slip behavior for wheel-legged robot is analytically explored and physically understood by identification of the non-slip condition and derivation of the torque limits satisfying it. Utilizing results of the analysis of slip behavior, the frictional coefficients of the wheel-legged robot during stance phase are numerically estimated and finally this paper suggests the pseudo-algorithm which can not only estimate the frictional coefficients of the wheel-legged robot, but also produce the candidate of the touch down angle for the next stance.

안정 파지를 위한 16자유도 역구동 관절을 가지는 인간형 로봇 손 개발 (Development of a 16 DOF Anthropomorphic Robot Hand with Back-Drivability Joint for Stable Grasping)

  • 양현대;박성우;박재한;배지훈;백문홍
    • 로봇학회논문지
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    • 제6권3호
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    • pp.220-229
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    • 2011
  • This paper focuses on a development of an anthropomorphic robot hand. Human hand is able to dexterously grasp and manipulate various objects with not accurate and sufficient, but inaccurate and scarce information of target objects. In order to realize the ability of human hand, we develop a robot hand and introduce a control scheme for stable grasping by using only kinematic information. The developed anthropomorphic robot hand, KITECH Hand, has one thumb and three fingers. Each of them has 4 DOF and a soft hemispherical finger tip for flexible opposition and rolling on object surfaces. In addition to a thumb and finger, it has a palm module composed the non-slip pad to prevent slip phenomena between the object and palm. The introduced control scheme is a quitely simple based on the principle of virtual work, which consists of transposed Jacobian, joint angular position, and velocity obtained by joint angle measurements. During interaction between the robot hand and an object, the developed robot hand shows compliant grasping motions by the back-drivable characteristics of equipped actuator modules. To validate the feasibility of the developed robot hand and introduced control scheme, collective experiments are carried out with the developed robot hand, KITECH Hand.