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MANIPULATION

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

Byoung‐Ho Kim

Year
2009
Citations
6
Access
Open access

Abstract

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.

Keywords

Task (project management)Computer scienceStiffnessRobotRelation (database)Object (grammar)Space (punctuation)Artificial intelligenceComputer visionEngineering

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