首页 /研究 /Grasping force optimization for multi-fingered robot hands
MANIPULATION

Grasping force optimization for multi-fingered robot hands

Martin Buss, Hideki Hashimoto, J.B. Moore

发表年份
2002
引用次数
14

摘要

For dextrous robotic hand grasping a key goal is to balance external and internal grasping forces to assure a stable grasp and low grasping energy. In this paper, the authors view the task of grasping force optimization as a linearly constrained semidefinite programming problem for which there are known globally exponentially convergent solutions via gradient flows. A key observation is that the nonlinear friction constraint at each contact point is equivalent to the positive definiteness of a suitable matrix containing the contact wrench intensities. A recursive version is presented, and numerical examples demonstrate the simplicity, the good numerical properties, and optimality of the approach.

关键词

WrenchGRASPContact forceSimplicityConstraint (computer-aided design)TorquePositive definitenessComputer scienceKey (lock)Nonlinear programming

相关论文

查看 MANIPULATION 分类全部论文