• 제목/요약/키워드: grasping system

검색결과 297건 처리시간 0.028초

Stable Haptic Display Based on Coupling Impedance for Internal and External Forces

  • Kawai, Masayuki;Yoshikawa, Tsuneo
    • Transactions on Control, Automation and Systems Engineering
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    • 제4권1호
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    • pp.2-8
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    • 2002
  • This paper discusses haptic display for grasping a virtual object by two fingers. Much research has been done on fundamental analysis for stability of haptic display. But it is difficult to apply the results immediately to grasping situations by two fingers, since the studies usually deal with a single device and a single object and the fingertip force in grasping situations has two components, internal and external components. The conventional methods, which specify the coupling impedance at each contact point separately, have no other alternative but to specify the impedance for the sum of the internal and external components. So even if only the impedance for the external force should be changed, the impedance for the internal force is also changed at the same time. In this paper, a new method, in which the coupling impedance is specified separately for the internal and external forces, is proposed and the stability of the proposed method is discussed using passivity analysis for 1 -DOF(Degree-Of-Freedom) system. Finally, some experiments are performed to study the effects of the proposed method.

GRASPING FORCE CONTROL OF ROBOT HAND

  • Sim, Kwee-Bo;Hashimoto, Hideki;Harashima, Fumio
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1988년도 추계학술대회 논문집 학회본부
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    • pp.455-458
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    • 1988
  • In this paper, a grasping force control of robot hand is presented with consideration of workpiece dynamics. It is difficult to control a manipulator without the knowledge of Its dynamics, because its handling with unknown workpiece may bring about overshoots and vibrations. Then it is necessary to adjust control gains according to the handling workpieces in order to achieve good control performances. The authors propose a new control strategy which uses adaptive observer and VSS (${\underline{V}}ariable$ ${\underline{S}}tructure$ ${\underline{S}}ystem$) controller to subdue these overshoots and vibrations. Some simulations of the proposed method are carried out for a grasping system to control the grasping force to various workpieces, whose dynamics cannot be known in advance.

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무인 FA를 위한 플렉시블 그리퍼 설계에 관한 연구 (A Study on Design of Flexible Gripper for Unmanned FA)

  • 김현근;김기복;김태관
    • 한국산업융합학회 논문집
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    • 제18권3호
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    • pp.167-172
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    • 2015
  • In this paper, we propose a new approach to design and control a smart gripper of robot system. A control method for flexible grasping a object in partially unknown environment was proposed, where a proximate sensor detecting the distance between the fingertip and object was used. Based on the proximate sensor signal the finger motion controller could plan the grasping process divided in three phases. The first step is scanning process which two first joints were moved to mid-position of the detected range by a state-variable feedback position controller, after the scanning was finished. The contact force of fingertip was then controlled using the detection sensor of the servo controller for finger joint control. The proposed grasping planning was tested on rectangular bar.

과소 구동 전동의수의 파지력 제어를 위한 햅틱 시스템 개발 (Development of a Haptic System for Grasp Force Control of Underactuated Prosthetics Hands)

  • 임현상;권효찬;김권희
    • 대한기계학회논문집A
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    • 제41권5호
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    • pp.415-420
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    • 2017
  • 과소 구동 전동의수는 가벼우며 비교적 경제적이라는 장점이 있다. 본 연구에서는 적응파지가 가능한 과소 구동 전동의수를 대상으로 경제적인 파지력 제어 시스템을 제안하였다. 근전도 신호로 구동되는 메인 케이블의 장력으로 파지력이 결정되므로 장력에 따라 사용자의 피부에 부착된 진동모터를 구동하는 촉감기반 피드백 시스템을 구성하였다. 진동 신호에 대한 사용자의 감각적 판단을 기반으로 파지력을 추정하고 제어하기 위하여 파지력과 진동 신호 간의 적절한 변환 관계를 수립하고 시제품 성능시험을 하였다. 최소한의 훈련으로 사용자들은 비교적 정확하게 파지력을 제어할 수 있었다.

소프트-팁이 장착된 듀얼-핑거의 안정적 파지 제어에 관한 연구 (A Study on Stable Grasping Control of Dual-fingers with Soft-Tips)

  • 심재군;한형용;양순용;이병룡;안경관;김성수
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2002년도 추계학술대회 논문집
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    • pp.219-224
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    • 2002
  • This paper aims to derive a mathematical model of the dynamics of handling tasks in robot finger which stable grasping and manipulates a rigid object with some dexterity. Firstly, a set of differential equation describing dynamics of the manipulators and object together with geometric constraint of tight area-contacts is formulated by Lagrange's equation. Secondly, problems of controlling both the internal force and the rotation angle of the grasped object under the constraints of area-contacts of tight area-contacts are discussed. The effect of geometric constraints of area-contacts on motion of the overall system is analyzed and a method of computer simulation for overall system of differential-algebraic equations is presented. Thirdly, simulation results are shown and the effects of geometric constraints of area-contact is discussed. Finally, it is shown that even in the simplest case of dual single D.O.F manipulators there exists a sensory feedback from sensing data of the rotational angle of the object to command inputs to joint actuators and this feedback connection from sensing to action eventually realizes secure grasping of the object, provided that the object is of rectangular shape and motion is confined to a horizontal plane.

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로봇 손에 의한 자유곡면 물체의 파지 및 조작에 관한 운동학 (Kinematics of Grasping and Manipulation of Curved Surface Object with Robotic Hand)

  • 황창순
    • 대한기계학회논문집A
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    • 제29권1호
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    • pp.1-13
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    • 2005
  • Kinematics of grasping and manipulation by a multi-fingered robotic hand where multi-fingertip surfaces are in contact with an object is solved. The surface of the object was represented by B-spline surfaces in order to model the objects of various shapes. The fingers were modeled by cylindrical links and a half ellipsoid fingertip. Geometric equations of contact locations have been solved for all possible contact combinations between the fingertip surface and the object. The simulation system calculated joint displacements and contact locations for a given trajectory of the object. Since there are no closed form solutions for contact or intersection between these surfaces, kinematics of grasping was solved by recursive numerical calculation. The initial estimate of the contact point was obtained by approximating the B-spline surface to a polyhedron. As for the simulation of manipulation, exact contact locations were updated by solving the contact equations according to the given contact states such as pure rolling, twist-rolling or slide-twist-rolling. Several simulation examples of grasping and manipulation are presented.

Visual servoing based on neuro-fuzzy model

  • Jun, Hyo-Byung;Sim, Kwee-Bo
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1997년도 한국자동제어학술회의논문집; 한국전력공사 서울연수원; 17-18 Oct. 1997
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    • pp.712-715
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    • 1997
  • In image jacobian based visual servoing, generally, inverse jacobian should be calculated by complicated coordinate transformations. These are required excessive computation and the singularity of the image jacobian should be considered. This paper presents a visual servoing to control the pose of the robotic manipulator for tracking and grasping 3-D moving object whose pose and motion parameters are unknown. Because the object is in motion tracking and grasping must be done on-line and the controller must have continuous learning ability. In order to estimate parameters of a moving object we use the kalman filter. And for tracking and grasping a moving object we use a fuzzy inference based reinforcement learning algorithm of dynamic recurrent neural networks. Computer simulation results are presented to demonstrate the performance of this visual servoing

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Soft-Tip을 가진 Dual Finger의 파지운동제어에 관한 연구 (Research of Controlled Motion of Dual Fingers with Soft-Tips Grasping)

  • 박경택;양순용;한현용
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2000년도 추계학술대회 논문집
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    • pp.670-673
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    • 2000
  • This paper attempt analysis and computer simulation of dynamics of a set of dual multi-joint fingers with soft-deformable tips which are grasping. Firstly, a set of differential equation describing dynamics of the fingers and object together with geometric constraint of tight area-contacts is formulated by Euler-Lagrange's formalism. Secondly, problems of controlling both the internal force and the rotation angle of the grasped object under the constraints of area-contacts of tight area-contacts are discussed. The effect of geometric constraints of area-contacts on motion of the overall system is analyzed and a method of computer simulation for overall system of differential-algebraic equations is presented. Finally, simulation results are shown and the effects of geometric constraints of area-contact is discussed.

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Field-Robot의 안정적 파지운동 제어에 관한 연구 (Research of Stable Grapsing in Field Robot)

  • 박경택;심재군;한현용;양순용;이병룡
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 추계학술대회 논문집
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    • pp.492-495
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    • 1997
  • This paper aims to derive a mathematical model of the dynamics of handling task in field robot which stable grasping and manipulates a rigid object with some dexterity. Firstly, a set of differential equation describing dynamics of the manipulators and object together with geometric constraints of tight area-contacts on motion of the overall system is analyzed and a method of computer simulation for overall system of differential-algebraic equations is presented. Thirdly, simulation results are shown and the effects of geometric constraints of contact-area are discussed. Finally, it is shown that even in the simplest case of dual single D.O.F. manipulators there exists a sensory feedback from sensing data of he rotational angle of the object to command inputs to joint actuators and this feedback connection from sensing to action eventually realizes secure grasping of the object, provided that he object is of rectangular shape and motion is confined to a horizontal

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RGB-D 환경인식 시각 지능, 목표 사물 경로 탐색 및 심층 강화학습에 기반한 사람형 로봇손의 목표 사물 파지 (Grasping a Target Object in Clutter with an Anthropomorphic Robot Hand via RGB-D Vision Intelligence, Target Path Planning and Deep Reinforcement Learning)

  • 류가현;오지헌;정진균;정환석;이진혁;;김태성
    • 정보처리학회논문지:소프트웨어 및 데이터공학
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    • 제11권9호
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    • pp.363-370
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    • 2022
  • 다중 사물 환경에서 목표 사물만의 정밀한 파지를 위해서는 장애물과의 충돌 회피 지능과 정교한 파지 지능이 필요하다. 이 작업을 위해선 다중 사물 환경 인지, 목표 사물 인식, 경로 설정, 로봇손의 사물 파지 지능이 필요하다. 본 연구에서는 RGB-D 영상 센서를 이용하여 다중 사물 환경과 사물을 인지하고 3D 공간을 매핑한 후, 충돌 회피 경로 탐색 알고리즘을 활용하여 목표 사물까지의 경로를 탐색 및 설정하고, 강화학습을 통해 학습된 사람형 로봇손의 목표 사물 파지 지능을 활용해 최종적으로 시뮬레이션 및 하드웨어 사물 파지 시스템을 구현하고 검증하였다. 사람형 로봇손을 구현한 시뮬레이션 환경에서 5개의 사물 중 목표 사물을 지정하고 파지한 결과 경로 탐색 없는 파지 시스템이 평균 78.8%의 성공률과 34%의 충돌률을 보일 때, 경로 탐색 지능과 결합된 시스템은 평균 94%의 성공률과 평균 20%의 충돌률을 보였다. UR3와 QB-Soft Hand를 사용한 하드웨어 환경에서는 3개의 사물 중 목표 사물을 지정하고 파지한 결과 경로 탐색 없는 파지 시스템이 평균 30%의 성공률과 97%의 충돌률을 보일 때, 경로 탐색 지능과 결합된 시스템은 평균 90%의 성공률과 평균 23%의 충돌률을 보였다. 본 연구에서는 RGB-D 시각 지능, 충돌 회피 경로 탐색, 사물 파지 심층 강화학습 지능의 결합을 통하여, 사람형 로봇손의 목표 사물 파지가 가능함을 제시하였다.