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マニピュレーションarXiv:2503.19171

接触ベースの把持制御と逆運動学による五指ロボットハンド

Contact-based Grasp Control and Inverse Kinematics for a Five-fingered Robotic Hand

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PyBulletとDexHand v2を用い、接触点最適化と力閉包検証を組み合わせた五指ロボットハンドの把持制御手法を実装・評価した。

著者: Robinson Umeike

分類: cs.RO

原文アブストラクト

This paper presents an implementation and analysis of a five-fingered robotic grasping system that combines contact-based control with inverse kinematics solutions. Using the PyBullet simulation environment and the DexHand v2 model, we demonstrate a comprehensive approach to achieving stable grasps through contact point optimization with force closure validation. Our method achieves movement efficiency ratings between 0.966-0.996 for non-thumb fingers and 0.879 for the thumb, while maintaining positional accuracy within 0.0267-0.0283m for non-thumb digits and 0.0519m for the thumb. The system demonstrates rapid position stabilization at 240Hz simulation frequency and maintains stable contact configurations throughout the grasp execution. Experimental results validate the effectiveness of our approach, while also identifying areas for future enhancement in thumb opposition movements and horizontal plane control.

関連論文

PR本紙発行元 EmplifAI