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MANIPULATION

A unified control scheme for a whole robotic arm-fingers system in grasping and manipulation

Ji‐Hun Bae, S. Arimoto, Ryuta Ozawa, Masahiro Sekimoto, Morio Yoshida

Year
2006
Citations
17

Abstract

This paper proposes a novel control method for enabling a robotic arm with a pair of two degrees of freedom (DOFs) robotic fingers as an endeffector to execute a variety of superimposed tasks in a coordinated way. Differently from conventional control methods previously proposed for arm-hand systems that adopt a separate design to control each robotic part, such as an arm and a hand, the proposed method designs a unified single control scheme for movements of the whole robotic arm-fingers system. It is assumed that finger-tips are rigid and there are rolling constraints between the finger-tips and a target object, and whole motion of the system is confined to the horizontal plane. The results of numerical computer simulation demonstrate that the proposed method is sufficiently effective in control of such a whole robotic arm-fingers system, and in particular is applicable to superimposed tasks, grasping, regulating, and replacing a target object through composition of the control signal based on the principal of superposition. It is concluded that special attentions in design of control signals should be paid to the wrist that combines the finger parts to the arm

Keywords

Robotic armScheme (mathematics)Computer scienceControl systemMotion controlObject (grammar)GRASPRobotic handDegrees of freedom (physics and chemistry)Artificial intelligence

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