• 제목/요약/키워드: exoskeleton

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IMS를 위한 Human Interface 시스템 개발 - 원격제어 시스템의 활용 - (Development of a Human Interface System for the IMS, - Application of the Teleoperation System -)

  • 차인혁;한창수;이병주
    • 한국정밀공학회지
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    • 제15권8호
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    • pp.156-164
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    • 1998
  • IMS is a more advanced manufacturing system than FMS. However, IMS do not have sufficient performance for the work in the various and uncertain environment, because of the difficulty of the work and occurrence of the unexpected condition. If IMS is hard to work properly, teleoperation system can support it by using the human's consideration and judgment. The master mechanism is a basic component of the teleoperation system and the development of the useful one is important for efficiency of the work. A master mechanism of exoskeleton type can increase the work efficiency, mobility and harmony between a working robot and an operator. This paper describes an arm-harness of exoskeleton type, which is able to drive a robot according to judgment. This device is applied to a robot system for evaluating the system performance through the experiment.

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인간공학기반 7자유도 모션캡쳐 장치 설계 (Ergonomics-based Design of 7 Degrees of Freedom Motion Capture Device)

  • 노병국;최기흥
    • 한국안전학회지
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    • 제29권1호
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    • pp.41-46
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    • 2014
  • The design of a 7 degree of freedom motion capture device(MCD) has been presented. The newly designed MCD overcomes the shortcomings of the existing CADEN-7 exoskeleton robot by implementing various ergonomic design. To improve ease of operation, light-weight high-strength materials such as carbon pipes and engineering plastics were used to reduce weight of the MCD and arm-length adjustment mechanism was also added. The MCD showed consistent measurement results in designed experiments involving change of arm posture from nominal configuration to either elbow-side or arm-front configurations. Furthermore, captured motion in more natural tennis swing appeared to agree well with visual observations made.

여자유도를 이용한 상지 착용형 로봇의 메커니즘 설계 (Redundant Design of Wearable Robot Mechanism for Upper Arm)

  • 이영수;홍성준;장혜연;장재호;한창수;한정수
    • 한국정밀공학회지
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    • 제26권7호
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    • pp.134-141
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    • 2009
  • Recently, many researchers have tried to develop wearable robots for various fields such as medical and military purposes. We have been studying robotic exoskeletons to assist the motion of persons who have problems with their muscle function in daily activities and rehabilitation. The upper-limb motions (shoulder, elbow and wrist motion) are especially important for such persons to perform daily activities. Generally for shoulder motion 300F is needed to describe its motion(extension/flexion, abduction/adduction, internal/external rotation) but we have used a redundant actuator thus making a 4 DOF system. In this paper, we proposed the mechanism design of the exoskeleton which consists of 4-DOF for shoulder and 1-DOF for elbow robotic exoskeleton to assist upper-limb motion. Then we compared the new mechanism design and prototype mechanism design. Here we also analyze the proposed system kinematically to find out and to avoid the singular point. This research will ensure that the proposed wearable robot system make human's motion more powerfully and more easily.

상지 외골격 로봇 제어를 위한 인체 팔 동작의 기구학 및 동역학적 분석 - 파트 2: 제한조건의 선형 결합 (Analysis on the Kinematics and Dynamics of Human Arm Movement Toward Upper Limb Exoskeleton Robot Control - Part 2: Combination of Kinematic and Dynamic Constraints)

  • 김현철;이춘영
    • 제어로봇시스템학회논문지
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    • 제20권8호
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    • pp.875-881
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    • 2014
  • The redundancy resolution of the seven DOF (Degree of Freedom) upper limb exoskeleton is key to the synchronous motion between a robot and a human user. According to the seven DOF human arm model, positioning and orientating the wrist can be completed by multiple arm configurations that results in the non-unique solution to the inverse kinematics. This paper presents analysis on the kinematic and dynamic aspect of the human arm movement and its effect on the redundancy resolution of the seven DOF human arm model. The redundancy of the arm is expressed mathematically by defining the swivel angle. The final form of swivel angle can be represented as a linear combination of two different swivel angles achieved by optimizing two cost functions based on kinematic and dynamic criteria. The kinematic criterion is to maximize the projection of the longest principal axis of the manipulability ellipsoid of the human arm on the vector connecting the wrist and the virtual target on the head region. The dynamic criterion is to minimize the mechanical work done in the joint space for each of two consecutive points along the task space trajectory. The contribution of each criterion on the redundancy was verified by the post processing of experimental data collected with a motion capture system. Results indicate that the bimodal redundancy resolution approach improved the accuracy of the predicted swivel angle. Statistical testing of the dynamic constraint contribution shows that under moderate speeds and no load, the dynamic component of the human arm is not dominant, and it is enough to resolve the redundancy without dynamic constraint for the realtime application.

위치/힘 피드백이 가능한 외골격 구조의 데이터 글로브 개발 (Development of Exoskeleton-Type Data Glove for Position/Force Feedback)

  • 김민정;김대경;박한길;김의겸;최병준;최혁렬
    • 대한기계학회논문집A
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    • 제35권12호
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    • pp.1585-1591
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    • 2011
  • 본 연구에서는 사용자의 손에 장착하여 손의 움직임을 측정하고 힘의 반영이 가능한 새로운 형태의 데이터 글로브(data glove)를 제안한다. 본 연구의 데이터 글로브는 인간의 외골격 구조의 분석이 기반하고 있으며 하나의 손가락 모듈은 4절기구의 조합을 통하여 1자유도로 구동이 되도록 고안되어 있다. 데이터 글로브는 펴기(extension)와 구부리기(flexion)를 할 수 있으며 내전(adduction)/외전(abduction)을 위해서 두 개의 유니버설 관절을 이용한 새로운 metacarpal joint 메커니즘을 고안하였다. 동 데이터 글로브의 유효성을 평가하기 위하여 검지손가락을 위한 구동회로와 센서를 포함한 전체 시스템을 제작하였으며 가상공간에 동적 시뮬레이션을 통해서 나타낸 물체를 조작하는 실험을 수행하였다.

단계별 무릎 재활을 위한 근전도 및 관성센서 피드백 기반 외골격 시스템 개발 (Development of a Knee Exoskeleton for Rehabilitation Based EMG and IMU Sensor Feedback)

  • 김종운;김가을;지영범;이아람;이현주;태기식
    • 대한의용생체공학회:의공학회지
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    • 제40권6호
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    • pp.223-229
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    • 2019
  • The number of knee-related disease patients and knee joint surgeries is steadily increasing every year, and for knee rehabilitation training for these knee joint patients, it is necessary to strengthen the muscle of vastus medialis and quadriceps femoris. However, because of the cost and time-consuming difficulties of receiving regular hospital treatment in the course of knee rehabilitation, we developed knee exoskeleton using rapid prototype for knee rehabilitation with feedback from the electromyogram (EMG) and inertia motion unit (IMU) sensor. The modules was built on the basis of EMG and an IMU sensor applied complementary filter, measuring muscle activity in the vastus medialis and the range of joint operation of the knee, and then performing the game based on this measurement. The IMU sensor performed up to 97.2% accuracy in experiments with ten subjects. The functional game contents consisted of an exergaming platform based on EMG and IMU for the real-time monitoring and performance assessment of personalized isometric and isotonic exercises. This study combined EMG and IMU-based functional game with knee rehabilitation training to enable voluntary rehabilitation training by providing immediate feedback to patients through biometric information, thereby enhancing muscle strength efficiency of rehabilitation.

Exoskeleton System for Radiation Protection in Interventional Radiology

  • Clarissa Hosse;Johannes Kolck;Elif Can;Uli Fehrenbach;Timo A. Auer;Fabio Pivetta;Federico Collettini;Bernhard Gebauer;Maximilian de Bucourt
    • Journal of Radiation Protection and Research
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    • 제49권2호
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    • pp.78-84
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    • 2024
  • Background: As the quantity and complexity of radiological interventions are constantly increasing, gear that offers optimal protection while maintaining mobility and a low weight burden is becoming more important. A newly developed exoskeleton radiation protection system (ERPS) (StemRad MD; StemRad Ltd.) can carry the weight of the shielding. The aim of our study was to analyze initial experience, especially in terms of advantages and disadvantages, with this new ERPS in interventional radiology. Materials and Methods: Forty-six interventions utilizing the ERPS were analyzed. The interventional radiologists completed a 15-question survey evaluating various aspects of the protective system, including weight, mobility, comfort, and radiation protection adequacy. Results and Discussion: In 98% of procedures, interventionalists reported being very satisfied (89%) or slightly satisfied (9%) and would recommend the system to colleagues. The exoskeleton system was rated as 100% comfortable, not too heavy, and did not restrict mobility in 98% of cases. Conclusion: The ERPS is a recommendable alternative to standard lead aprons, providing flexibility, comfort, and effective weight distribution without restricting mobility.