• 제목/요약/키워드: hand force

검색결과 824건 처리시간 0.025초

근전의수의 내구성 시험방법에 대한 연구 (Study on a test method for the endurance of myoelectric hand prosthesis)

  • 최기원;문무성
    • 재활복지공학회논문지
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    • 제5권1호
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    • pp.11-15
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    • 2011
  • 본 논문은 사함의 근육에서 발생하는 근전위 신호에 의해서 제어되는 근전의수의 성능에 대한 시험방법을 제안한 것이다. 근전의수는 기계적인 의수, 근전위 신호를 측정하는 표면 근전위 센서, 제어시스템, 그리고 충전용 배터리로 구성되어 있다. 상용화 된 근전의수를 가지고 파지 내구성을 시험한 결과 소음과 파지력은 큰 차이가 없었다. 제안된 시험방법은 내구성 시험을 통하여 근전의수의 신뢰성을 검증하였다.

손 떨림 방지를 위한 OIS 액추에이터의 설계 (Design of Optical Image Stabilization Actuator for Compensating Hand Tremble)

  • 허영준;박노철;박영필;박경수
    • 정보저장시스템학회논문집
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    • 제7권2호
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    • pp.75-79
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    • 2011
  • Recently mobile phone camera become generally spread, it is required to develop high resolution, multi-functional camera module for obtaining high image quality. To satisfy this demand, number of pixels has been increased and pixel size decreased in small mobile phone cameras. As a result, image quality is seriously dropped by blur phenomena. Especially when hand tremble is occurred, image quality is dropped by camera shake. Therefore, to obtain high quality image, it is necessary to compensate user's hand tremble. In this paper, we propose voice coil actuator for compensating hand tremble, which can apply optical image stabilization (OIS) system. Sensitivity analysis and size optimization are performed to obtain high driving force. Finally, it is confirmed that the optimized electromagnetic circuit can be applied in OIS system.

가상반발력을 생성하는 햅틱장비의 안정성과 성능한계에 관한 연구 (On the Stability and Performance Limits of the Force Reflecting Haptic Manipulator)

  • 채영호
    • 한국정밀공학회지
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    • 제15권12호
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    • pp.180-187
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    • 1998
  • The stability and theoretical performance limits of the feedback controlled force reflecting haptic manipulator have been discussed. All the virtual environment which interact physically with the haptic system have its own stable performance limit. Three different realization of the interfaces have been compared using the driving point admittance. The haptic system which is separated from the human hand or finger is superior to its stable interaction provided that there is a means to apply a direct damping between the haptic manipulator and the human finger Electro-magnetic force is used for its digital implementation of the simple separated type haptic device. The stable limits of a virtual wall is calculated and experimental results show that there is performance limits in this implementation.

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장애물의 상대속도를 반영한 포텐셜필드 기반 무인항공기 충돌회피 (Collision Avoidance for UAV using Potential Field based on Relative Velocity of Obstacles)

  • 안승규;이동진
    • 한국항공운항학회지
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    • 제26권2호
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    • pp.47-53
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    • 2018
  • In this paper, we investigate a collision avoidance algorithm for unmanned aerial vehicles using potential field based on the relative velocity of obstacles. The potential field consists of the attraction force and the repulsive force that are generated for the target and the obstacles. And the field can be classified into the attractive potential field generated by the target and the repulsive potential field generated by the obstacle, respectively. In this study, we construct an attractive potential field as a function of the distance between the UAV and the target position. On the other hand, a repulsive potential field is created by a function of distance and the relative velocity of the obstacle with respect to the UAV. The proposed potential field based collision avoidance algorithm is evaluate through simulations.

PUMA형 로보트 머니플레이터의 강인한 위치/힘 혼합제어 (Robust Hybrid Position/Force Control of a PUMA-Like Robot Manipulator)

  • 박재욱;이건복
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1995년도 추계학술대회 논문집 학회본부
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    • pp.575-578
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    • 1995
  • In general, the control of robot manipulator is classified into position control and force control. Position controllers give adequate performance when a manipulator is following a trajectory through space and end-effector has no contact with environment. However for most tasks performed by robot manipulator in industry, contact is made between the end-effector and manipulator's environment, so position control may not suffice. The objective of this study is to control both position of a manipulator and the contact forces generated at the hand by using a conceptually simple control law. Position and force control problem is decoupled into subtasts via taskspace formulation and inverse dynamics. Then, the position controllers are designed for the task space variable which represent tangent motion and the forte controllers are designed for the lash space variables which represent normal force.

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Application of the compressive-force path concept in the design of reinforced concrete indeterminate structures: A pilot study

  • Seraj, Salek M.;Kotsovos, Michael D.;Pavlovic, Milija N.
    • Structural Engineering and Mechanics
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    • 제3권5호
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    • pp.475-495
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    • 1995
  • In the past, physical models have been proposed, in compliance with the concept of the compressive-force path, for the realistic design of various statically determinate structural concrete members. The present work extends these models so as to encompass indeterminate RC structural forms. Pilot tests conducted on continuous beams and fixed-ended portal frames have revealed that designing such members to present-day concepts may lead to brittle types of failure. On the other hand, similar members designed on the basis of the proposed physical models attained very ductile failures. It appears that, unlike current design approaches, the compressive-force path concept is capable of identifying those areas where failure is most likely to be triggered, and ensures better load redistribution, thus improving ductility. The beneficial effect of proper detailing at the point of contraflexure in an indeterminate RC member is to be noted.

5절링크와 짐벌기구로 구성된 병렬형 6자유도 햅틱 핸드컨트롤러의 설계 (Design of a 6-DOF Parallel Haptic Rand Controller Consisting of 5-Bar Linkages and Gimbal Mechanisms)

  • 류동석;손원선;송재복
    • 대한기계학회논문집A
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    • 제27권1호
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    • pp.18-25
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    • 2003
  • A haptic hand controller (HHC) operated by the user’s hand can receive information on position and orientation of the hand and display force and moment generated in the virtual environment to the hand. In this paper, a 3-DOF hand controller is first presented, in which all the actuators are mounted on the fixed base by combining a 5-bar linkage and a gimbal mechanism. The 6-DOF HHC is then designed by connecting these two 3-DOF devices through a handle which consists of a screw and nut. Analysis using performance index is carried out to determine the dimensions of the device. The HHC control system consists of the high-level controller for kinematic and static analysis and the low-level controller for position sensing and motor control. The HHC used as a user interface to control the mobile robot in the virtual environment is given as a simple application.

충돌감지 알고리듬을 적용한 햅틱 핸드 컨트롤러의 제어 (Control of Haptic Hand Controller Using Collision Detection Algorithm)

  • 손원선;조경래;송재복
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 춘계학술대회 논문집
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    • pp.992-995
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    • 2003
  • A haptic device operated by the user's hand can receive information on position and orientation of the hand and display force and moment generated in the virtual environment to the hand. For realistic haptic display, the detailed information on collision between objects is necessary. In the past, the point-based graphic environment has been used in which the end effector of a haptic device was represented as a point and the interaction of this point with the virtual environment was investigated. In this paper, the shape-based graphic environment is proposed in which the interaction of the shape with the environment is considered to analyze collision or contact more accurately. To this end. the so-called Gilbert-Johnson-Keerthi (GJK) algorithm is adopted to compute collision points and collision instants between two shapes in the 3-D space. The 5- DOF haptic hand controller is used with the GJK algorithm to demonstrate a peg-in-hole operation in the virtual environment in conjunction with a haptic device. It is shown from various experiments that the shape-based representation with the GJK algorithm can provide more realistic haptic display for peg-in-hole operations.

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손가락 힘 통제 특성에 기반한 운동의지장애의 정량적 평가 방법 개발 (Development of a Quantitative Assessment Method of Finger Force Control Capabilities forMotor Intentional Disorders)

  • 정기효;김은주;유희천;나덕렬;이민정;서상원;이병화
    • 대한인간공학회지
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    • 제25권2호
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    • pp.155-160
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    • 2006
  • Motor intentional disorders have been studied by visual examination methods such as cross-response task and Luria loop. To provide more analytical, quantitative information for motor intentional disorders, the present study developed a method which evaluates force control capabilities by the index finger. The assessment method analyzes the finger force control capabilities at four stages(initiation, development, maintenance, and termination) with NK Pinch-GripTM(force resolution= 0.098 N; temporal resolution=50Hz). By applying the assessment method, a patient(age=66) with callosal legion was compared with 6 healthy males(mean age=65.5, SD=2.8), showing significant but different decreases in force control capabilities depending on hand and response location. The assessment method would be of use to better understand various aspects of motor intentional disorders such as the effects of the disorders to the neurological network of the brain and severity assessment of the disorders.

머리-목 회전이 편부전마비 환자의 팔꿈치 신전근력에 미치는 영향 (Influence of Head-Neck Rotation on Static Elbow Extension Force in Patients with Hemiparesis)

  • 유욱재;이상은;이정원
    • 한국전문물리치료학회지
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    • 제4권1호
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    • pp.39-47
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    • 1997
  • The purpose of this investigation was to examine the influence of head and neck(HN) position in the transverse plane on the static production of elbow extension force in the involved(paretic) upper extremity of patients with hemiparesis. On this study, thirty patients who had experienced a cerebrovascular accident were matched with neurologically intact subjects. Force of static elbow extension was tested with a hand-held dynamometer, twice with the HN rotated toward the paretic side and twice with the HN rotated toward the non-paretic side. Elbow extension force differed significantly with the HN in the two position in patients with hemiparesis but not in normal persons(${\alpha}$=0.05). Results of this study support the conclusion that HN position in the transverse plane influences the production of static elbow extension force on the paretic side in patients with hemiparesis.

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