• 제목/요약/키워드: Reaction Force Compensation

검색결과 16건 처리시간 0.035초

XY 선형 모션 스테이지 시스템의 반발력 보상 기구와 제어 (Mechanism and Control of Reaction Force Compensation of XY Linear Motion Stage System)

  • 조규중;최동수;안형준
    • 대한기계학회논문집A
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    • 제35권6호
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    • pp.599-607
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    • 2011
  • 본 논문에서는 별도의 외부 격리 구조물이나 추가 모터가 필요 없는 XY 선형 모션 스테이지를 위한 반발력 보상 시스템을 개발하였다. 개발된 시스템은 이동 가능한 마그넷 트랙, 스프링, 추가 질량을 포함한 자체 반발력 보상 구조를 가지고 있으며 이송용 모터 코일과 마그넷 트랙의 상대 위치를 검출할 수 있는 전용 센서를 개발하여 고정밀 추력 및 위치를 제어에 적용하였다. 먼저 반발력 보상 시스템을 모델링하고 모의 시험을 통해 이동 거리, 가속도, 하중, 허용 가능한 장비 크기와 같은 설계 요소를 최적화 하였다. 반발력 보상 시스템이 구비된 XY 모션 스테이지를 제작하였으며, 해당 시스템의 성능을 실험적으로 검증하였다. 실험결과 10m/$s^2$ 가감속 시에 85%의 반발력이 반발력 보상 시스템에 의해 흡수되었다.

추가 이동 질량을 이용한 선형 모터용 반발력 보상 기구 (A Passive Reaction Force Compensation Mechanism for a Linear Motor Motion Stage using an Additional Movable Mass)

  • 응웬덕칸;안형준
    • 한국정밀공학회지
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    • 제31권10호
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    • pp.929-934
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    • 2014
  • Reaction force compensation (RFC) mechanism can relieve the vibration of base system caused by acceleration and deceleration of mover. In this paper, we propose a new passive RFC mechanism with a movable additional mass to reduce vibration of the system base as well as displacement of the magnet track. First, equation of motion for the new passive RFC mechanism is derived and simulated to tune design parameters such as masses and spring coefficients. Simulation results show that the vibration of the system base of the stage with the new RFC mechanism.

정상인 보행에서 무릎관절의 유도된 강직에 따른 신체 보상 특성 (Characteristics of the Compensation for Gait of the Induced Knee Stiffness in Normal Subjects)

  • 우병훈
    • 한국운동역학회지
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    • 제23권4호
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    • pp.357-367
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    • 2013
  • The purposes of this study were investigated physical compensation for gait on induced knee stiffness in normal subjects. Ten subjects were participated in the experiment(age: $26.0{\pm}6.3$ yrs, height: $175.5{\pm}5.3$ cm, weight: $69.1{\pm}6.1$ kg). The study method adopted 3D analysis with five cameras and ground reaction force with two force-plate. Induced knee stiffness level were classified as gait pattern on ROM of knee(free level, $30^{\circ}$ restriction level, fix level). The results were as follows; In angular displacement of hip joint, left hip joint was the more extended in mid-stance on induced right knee stiffness. In angular displacement of knee joint, there was no physical compensation on induced right knee stiffness, but free knee level gait was more flexed in swing phase of right knee joint. In angular displacement of ankle joint, right ankle joint was the more dorsiflexed on induced right knee stiffness, and $30^{\circ}$ restriction level and fix level gait were less plantarflexed in TO2. In trunk tilt, free and $30^{\circ}$ restriction level gait was more backward tilt on induced right knee stiffness. In ROM of each joint, right knee joint was more larger and trunk tilt was more lower on induced right knee stiffness. In GRF, Fx was more bigger lateral force in free and $30^{\circ}$ restriction level gait, and was more bigger medial force in fix level gait. Fy was more bigger propulsion force in free level gait, and was was more bigger braking force in $30^{\circ}$ restriction level gait. Left braking force in $30^{\circ}$ restriction level gait was more bigger. Fz was no significant.

편마비환자의 중력선 이동에 따른 역학적 분석 (Biomechanical Analysis on the Shift of Gravity Line in Hemiplegic Patients)

  • 이혜영;정동훈;박래준;김진상
    • The Journal of Korean Physical Therapy
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    • 제11권1호
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    • pp.63-70
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    • 1999
  • This study was for mathematical method of calculating the joint reaction force during on single - leg stance on a normal and hemiplegic patients. It is important to compare the distance of the line of gravity from the hip joint on hemiplegic patients with this on normal in this study. In earlier studies, there is no include the concept about biomechanical analysis on the shin of line of gravity of hemiplegic patients. Though this concept, we found the compensation make the line of gravity closer to the supporting hip joint and the trunk was toward the side of paralysis. The result of the Joint reaction force on hemiplegic patients is found to be approximately $31.33\%$ in the unaffected side by biomechanical analysis.

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공압 매니퓰레이터의 강인 힘제어 (Robust Force Control of Pneumatic Manipulator)

  • 박정규;노리츠구토시로
    • 대한기계학회논문집A
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    • 제20권2호
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    • pp.540-552
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    • 1996
  • In this paper, a compensation method of disturbance using a disturbance observer is proposed for a force control of a pneumatic robot manipulator. The generated torque by a pneumatic actuator can be estimated based on the pressure signals. The inner torque control system is constructed by feeding back the generated torque to improve the dynamic characteristics of the actuator. In order to reduce the influence of disturbances comprising friction torque, parameter variations of plant and environment and so on, the reaction torque control system is constructed with a disturbance observer which estimates the disturbances based on the reference input to the inner torque control system and the reaction torque sensed with a forced sensor. From some simulations and experiments, it is confirmed that the proposed control system is effective to improve the robustness for the friction torque and the parameter change of object in the force control of a pneumatic robot manupulator.

ZMP Compensation Algorithm for Stable Posture of a Humanoid Robot

  • Hwang, Byung-Hun;Kong, Jung-Shik;Lee, Bo-Hee;Kim, Jin-Geol;Huh, Uk-Youl
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.2271-2274
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    • 2005
  • The desired ZMP is different from the actual ZMP of a humanoid robot during actual walking and stand upright. A humanoid robot must maintain its stable posture although external force is given to the robot. A humanoid robot can know its stability with ZMP. Actual ZMP may be moved out of the foot-print polygons by external disturbance or uneven ground surfaces. If the position of ZMP moves out of stable region, the stability can not be guaranteed. Therefore, The control of the ZMP is necessary. In this paper, ZMP control algorithm is proposed. Herein, the ZMP control uses difference between desired ZMP and actual ZMP. The proposed algorithm gives reaction moment with ankle joint when external force is supplied. 3D simulator shows motion of a humanoid robot and calculated data.

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주파수 보정법에 의한 구동기 외란 파라미터 정밀 결정 (PRECISION IDENTIFICATION OF ACTUATOR DISTURBANCE PARAMETER BY FREQUENCY COMPENSATION)

  • 이현호;전동익;오화석
    • 한국우주과학회:학술대회논문집(한국우주과학회보)
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    • 한국우주과학회 2005년도 한국우주과학회보 제14권1호
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    • pp.138-142
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    • 2005
  • 위성자세제어용 구동기 인 반작용 휠은 축 방향 토크뿐만 아니 라 횡 축 방향 외 란 토크와 힘을 발생시켜 위성의 정밀 지향 안정성에 영향을 미치게 된다. 이를 위해서는 반작용 휠 구동시의 발생 외란을 정밀하게 측정할 필요가 있다. 그러나 반작용 휠의 구동은 측정테이블의 진동을 야기 시키고 테이블의 공진 주파수 영역에서 큰 측정 오차를 유발한다. 본 논문은 이러한 진동오차들을 줄이기 위하여 주파수 보정법에 의한 사후처리 과정을 제시하고, 이 보정법으로 얻어진 데이터들로부터 외란 파라미터를 결정함으로써 구동기 외란의 보다 정밀한 측정을 가능케 하기 위함이다. 이 보정법을 적용함으로써 구동기 외란 측정 주파수범위를 넓힐 수 있다.

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정상인에서 유도된 첨족에 따른 신체 보행의 특성 (Characteristics for Gait of the Induced Equinus in Normal Subjects)

  • 우병훈
    • 한국운동역학회지
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    • 제24권4호
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    • pp.435-443
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    • 2014
  • The purposes of this study was to investigate the physical compensation for gait on induced equinus in normal subjects. Ten subjects were participate in the experiment (age: $23.8{\pm}2.8yrs$, height: $177.3{\pm}4.3cm$, weight: $70.8{\pm}4.6kg$). The study method adopted 3D analysis with six cameras and ground reaction force with two force-plate. Induced equinus were classify as gait pattern on unilateral and bilateral equinus. The results were as follows; In displacement of COM, medio-lateral and anterior-posterior COM were no significant, but in vertical COM, unilateral equinus gait was higher than bilateral equinus gait. In displacement hip joint, left hip joint was more extended in FC1 and FC2 during unilateral equinus gait. In displacement knee joint, left knee joint was more extended in FC2, right knee joint was more extended in all event during unilateral equinus gait. In trunk tilt, unilateral equinus gait was more forward tilt in TO1 and TO2. ROM of each joint was no significant. In Displacement of pelvic tilt angle, X axis of unilateral equinus gait was more increase than bilateral equinus gait at FC2, TO2 and MS2. Y axis of unilateral equinus gait was more increase than bilateral equinus gait at MS1, FC2 and MS2. Z axis was no significant in both equinus gait. In GRF, right Fx and Fy were no significant in both equinus gait, Fz was more bigger vertical force in bilateral equinus gait. Left Fx was more bigger internal force in unilateral equinus gait, Fy and Fz were no significant in both equinus gait.