• 제목/요약/키워드: Multi-fingered robotic hand

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Task-Based Analysis on Number of Robotic Fingers for Compliant Manipulations

  • Kim, Byoung-Ho
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제9권4호
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    • pp.333-338
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    • 2009
  • This paper presents a task-based analysis on the number of independent robotic fingers required for compliant manipulations. Based on the stiffness relation between operational space and fingertip space of a multi-fingered object manipulating system, we describe a technique for modulation of the fingertip stiffness without inter-finger coupling so as to achieve the desired stiffness specified in the operational space. Thus, we provides a guide line how many fingers are basically required for successful multi-fingered compliant tasks. Consequently, this paper enables us to assign effectively the number of fingers for various compliant manipulations by robot hands.

미지 물체의 구속상태에 관한 실시간 추정방법 (Estimation Method for Kinematic Constraint of Unknown Object by Active Sensing)

  • 황창순
    • 대한기계학회논문집A
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    • 제29권2호
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    • pp.188-200
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    • 2005
  • Control of a multi-fingered robotic hand is usually based on the theoretical analysis for kinematics and dynamics of fingers and of object. However, the implementation of such analyses to robotic hands is difficult because of errors and uncertainties in the real situations. This article presents the control method for estimating the kinematic constraint of an unknown object by active sensing. The experimental system has a two-fingered robotic hand suspended vertically for manipulation in the vertical plane. The fingers with three degrees-of-freedom are driven by wires directly connected to voice-coil motors without reduction gears. The fingers are equipped with three-axis force sensors and with dynamic tactile sensors that detect slippage between the fingertip surfaces and the object. In order to make an accurate estimation for the kinematic constraint of the unknown object, i.e. the constraint direction and the constraint center, four kinds of the active sensing and feedback control algorithm were developed: two position-based algorithms and two force-based algorithms. Furthermore, the compound and effective algorithm was also developed by combining two algorithms. Force sensors are mainly used to adapt errors and uncertainties encountered during the constraint estimation. Several experimental results involving the motion of lifting a finger off an unknown object are presented.

다지 다관절 로봇 손의 최적 접촉력 결정 방법 (Determination of optimal contact forces for multi-fingered robotic hands)

  • 백주현;서일홍;최동훈
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1990년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 26-27 Oct. 1990
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    • pp.52-56
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    • 1990
  • An algorithm is proposed to determine the optimal contact forces of robotic hands, where the soft finger contact as well as the frictional point contact are considered. Especially, the algorithm can be efficiently applied to the case of multi-point contact by inner-link as well as fingertip. To show the validities of the algorithm, several numerical exampies are presented by employing a robotics hand with three fingers each of which has four joints.

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손마디 접촉을 고려한 다지 다관절 로봇손의 최적 접촉력 결정 방법 (Determination of Optimal Contact Forces for Multi-Jointed, Multi-Fingered Robotic Hand Considering Contacts of Inner Links)

  • 백주현;정낙영;서일홍;최동훈
    • 대한전기학회논문지
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    • 제40권8호
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    • pp.825-835
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    • 1991
  • This paper deals with a case for robotic hands to grasp the objects using inner link contact as well as fingertip contact. And the case is proved to be more efficient than the case of using only fingertip contact in terms of stability and uniform distribution of the contact forces. The general algorithm for the determination of the optimal ocntact force is developed for the soft finger contact as well as the point contact with friction. To show the validity of the proposed algorithm a numerical example is illustated by employing a robotic hand with three fingers each of which has four joints.

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.

Door opening control using the multi-fingered robotic hand for the indoor service robot PSR

  • Rhee, Chang-Ju;Shim, Young-Bo;Chung, Woo-Jin;Kim, Mun-Sang;Park, Jong-Hyun
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2003년도 ICCAS
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    • pp.1093-1098
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    • 2003
  • In this paper, a practical methodology of hand-manipulator motion coordination for indoor service robot is introduced. This paper describes the procedures of opening door performed by service robot as a noticeable example of motion coordination. This paper presents well-structured framework for hand-manipulator motion coordination, which includes intelligent sensor data interpretation, object shape estimation, optimal grasping, on-line motion planning and behavior-based task execution. This proposed approach is focused on how to integrate the respective functions in harmony and enable the robot to complete its operation under the limitation of usable resources. As a practical example of implementation, the successful experimental results in opening door whose geometric parameters are unknown beforehand are provided.

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한양 로봇손 I의 설계 (Design of the Hanyang robotic hand I)

  • 정낙영;백주현;이수진;이준호;서일홍;최동훈
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1990년도 한국자동제어학술회의논문집(국내학술편); KOEX, Seoul; 26-27 Oct. 1990
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    • pp.508-513
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    • 1990
  • 오늘날, 생산성 증대와 품질 향상을 목적으로 산업용 로봇의 사용이 증대되면서 다양한 생산현장에서의 유연성과 적응성이 크게 요구되고 있는 실정이다. 그러나, 현재의 산업용 로봇은 end-effector의 dexterity의 부족으로 그 사용에 제한을 받고 있다. 이를 해결하기 위해 다지(multi-fingered), 다관절(articulated) 로봇손(robotic hands)의 도입이 필요하게 되었는데 이는 전체 로봇시스템의 능력과 유연성을 증가시킬 수 있을 것이다. 현재의 Flexible Manufacturing Workcell은 보통 한 대의 로봇팔과 많은 특수 용도의 고가의 tool로 구성되어 있으나 일반적인 모든 작업에 제한없이 모두 적용하기는 매우 어렵다. 그러므로, 다지, 다관절 로봇손의 개발 및 그 지능 제어의 실현은 작업에 따르는 불필요한 tool의 교환을 방지하여 비용과 시간을 절약함으로써 생산성을 극대화시킬 수 있다. 따라서, 본 연구에서는 Flexible Automation을 위한 다지, 다관절 로봇손의 설계 및 제작에 관한 방법을 제시하고자 한다.

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Dexterous Manipulation from Pinching to Power Grasping-Effective strategy according to object dimensions and grasping position-

  • Hasegawa, Yasuhisa;Rukuda, Toshio;Kanada, Kensaku
    • 한국지능시스템학회:학술대회논문집
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    • 한국퍼지및지능시스템학회 2003년도 ISIS 2003
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    • pp.24-27
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    • 2003
  • This paper discusses practical strategies for transition from a pinching to a power grasping, where a multi-fingered hand mounted on a robotic arm envelops a cylindrical object on a table. When the manipulation system grasps a cylindrical object like a pen on a desk, a complete enveloping is not impossible in the initial configuration. The system firstly pinches the object only with two or three fingers and then grasp it with fingers and a palm after regrasping. In this pinching-grasping transition maneuver, human unconsciously selects proper strategy according to some conditions including object dimensions and initial pinching positions. In this paper we therefore develop six possible strategies for this pinching-grasping transition and then investigate their performances for some objects with various dimensions and various grasping positions, using numerical simulations. Based on their results, effective strategies are implemented by using a hand-arm system.

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