• Title/Summary/Keyword: Master Manipulator

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A Force Reflecting and Compliant Control for Heavy-Duty Power Telemanipulators with Control Input Saturation (제어입력 포화를 고려한 고하중 원격조작기의 힘반영 유연성 제어)

  • An, Seong-Ho;Yun, Ji-Seop;Lee, Sang-Jeong
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.37 no.5
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    • pp.22-33
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    • 2000
  • Since the heavy-duty power manipulator generally has high ratio gear reducers at its joints, its dynamic characteristics is much slower than that of the master manipulator and it is likely to encounter the saturation in the input magnitude when it is used as the slave manipulator in telemanipulation systems. This paper proposes a force reflecting and compliant control scheme for the heavy-duty power telemanipulator. The main advantage of the proposed scheme is that it provides a precise position and compliant control performance for a telemanipulator with control input saturation. The stability of the proposed scheme is analyzed and a series of experiments shows its performance.

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Realization of Tactile Sense of Virtual Objects Using Neural-Networks (신경 회로망을 이용한 가상물체의 질감학습)

  • Kim, Su-Ho;Jang, Tae-Jeong
    • Proceedings of the KIEE Conference
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    • 2003.11b
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    • pp.263-266
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    • 2003
  • In this paper, we have proposed a realization method of tactile sense of virtual objects using multi-layer Neural Networks(NN). Inputs of the NN are position data of non-rigid objects and outputs of the NN are forces at that time and point. First, the position and forte data are measured from non-rigid objects (a sponge and a balloon) using two PHANToMS, one as a master and the other as a slave manipulator, then the data are used to train a multi-layer Neural Networks whose inputs and outputs are designed to represent tactile information. The trained Neural Networks is used to regenerate the tactile sense on the virtual objects graphically made by a computer, and one can feel a quite similar sense of touch by using the system while touching the virtual objects.

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Implementation of automatic mode for remote impact wrench task (로보트를 이용한 원격조작 임팩트렌치 작업의 자동수행 기능부 구현)

  • 박영수;박병석;이재설
    • 제어로봇시스템학회:학술대회논문집
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    • 1991.10a
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    • pp.832-837
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    • 1991
  • After many years of proliferation, the nuclear industry is indebted for a formidable consequence, the safe management of spent fuel. Naturally, the high radioactivity involved with such process motivates the development of effective telerobotic systems. Nevertheless, the existing master-slave type of tele manipulators are limited in effectiveness by the human operator's limited sensory and manipulation capabilities. This paper presents the result of a research effort to resolve such problems by assigning the slave manipulator a certain degree of intelligence; sensing and actuation. In the presented system, a perception-action loop is achieved using ultrasonic range sensor and laser distance sensor interfaced with the PUMA 760 industrial robot system, and applied to automating impact wrenching task for unbolting the lid of nuclear spent fuel cask. The perception-action loop performs determination of the cask location, collision avoidance and centering of the impact wrench onto the bolt head. To aid the insertion task and to provide versatility a mounting module consisting of an RCC device and an automatic tool changer is designed and implemented. The performance of the developed system is tested on the model cask and the result is given.

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Implementation of passive bilateral teleoperation system (Passive 양방향 원격조작 시스템의 구현)

  • Yoo, Sung-Goo;Kim, Young-Chul;Chong, Kil-To;Lee, Young-Choon
    • Proceedings of the KIEE Conference
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    • 2007.04a
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    • pp.122-124
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    • 2007
  • Master and slave of teleoperation control system through internet or long distance cable must keep stable. If one part becomes unstable or time delay happens in network, the all system can become unstable. Usually stability of teleoperation control system can distinguish by passivity. In this paper, we implemented bilateral teleopcration control system that load passivity controller to keep stability of system. Composed by manipulator that trillion this sricks and horizontal manufacturing that have force reflecting function are available and embodied so that control through wireless LAN may be available. And distinguished stability through an experiment and manufacturing performance.

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A Development of Rehabilitation System for Upper Limb Using Robot Manipulator (로봇을 이용한 상지 재활 시스템에 관한 연구)

  • 원주연;심형준;한창수
    • Journal of Biomedical Engineering Research
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    • v.24 no.4
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    • pp.309-318
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    • 2003
  • In this paper a 6 degree-of-freedom robot was studied for medical purpose. In the past the robot used for industry field was utilized for medical robot but in these days the robot used for rehabilitation. welfare, and service. This system was Proposed for a stroke patient or a patient who can not use one arm. A master-slave system was constructed to exercise either paralysis or abnormal arm using normal arms movement. Study on the human body motion result was applied to calculate a movement range of humans elbow and shoulder. In addition, a force-torque sensor is applied to estimate the rehabilitation extent of the patient in the slave robot. Therefore, the stability of the rehabilitation robot could be improved. By using the rehabilitation robot, the Patient could exercise by himself without any assistance In conclusion. the proposed system and control algorithm were verified by computer simulation and system experiment.