首页 /研究 /9 Passivity-Based Control
MANIPULATION

9 Passivity-Based Control

Ricardo G. Sanfelice

发表年份
2019
引用次数
15
访问权限
开放获取

摘要

Dynamics of a robot naturally satisfy passivity whether its tool endpoint is free to move or constrained on a surface of an object or environment. This property is inherent to the fact that. robot dynamics can be derived from a variational forni based on the concept of EL(Eu1er- Lagrange) formalism. In this paper it is shown that a class of robust and effective controllers can be designed by referring to the variational form. These controllers have a simple structure and can be designed without using the exact knowledge of kinematic and dynamic parameters and thereby are robust against parameter uncertainties. It is also shown that a class of H-infinity controllers for suppression of the effect of external disturbances can be designed naturally without solving Hamilton-Jacobi’s differential equations. Even in the case of a system of dual fingers with flexible and soft finger-tips grasping a rigid or deformable object, the dynamics satisfy passivity, from which feedback control schemes can be devised for realizing dynamic stable grasp ing and dexterous manipulation.

关键词

PassivityControl theory (sociology)Control (management)Computer scienceEngineeringArtificial intelligenceElectrical engineering

相关论文

查看 MANIPULATION 分类全部论文