DocumentCode
26311
Title
Task-Space Control of Robot Manipulators With Null-Space Compliance
Author
Sadeghian, Hamid ; Villani, L. ; Keshmiri, Mehdi ; Siciliano, Bruno
Author_Institution
Dept. of Biomed. Eng., Univ. of Isfahan, Isfahan, Iran
Volume
30
Issue
2
fYear
2014
fDate
Apr-14
Firstpage
493
Lastpage
506
Abstract
In this paper, the problem of controlling a robot manipulator in task space, while guaranteeing a compliant behavior for the redundant degrees of freedom, is considered. This issue may arise in the case where the robot experiences an interaction on its body, especially in the presence of humans. The proposed approach guarantees correct task execution and compliance of the robot´s body during intentional or accidental interaction in the null space of the main task, simultaneously. The asymptotic stability of the task-space error is ensured by using suitable observers to estimate and compensate the generalized forces acting on the task variables, without using joint torque measurements. Two different controller-observer algorithms are designed, and they are based on the task-space error and on the generalized momentum of the robot, respectively. The performance of the proposed algorithms is verified in experiments on a 7R lightweight robot arm.
Keywords
asymptotic stability; compliance control; compliant mechanisms; controllers; couplings; human-robot interaction; manipulators; observers; torque measurement; 7R lightweight robot arm; accidental interaction; asymptotic stability; compliant behavior; controller-observer algorithms; correct task execution; intentional interaction; joint torque measurements; null-space compliance; redundant degrees of freedom; robot body; robot experiences; robot manipulator control; task-space control; task-space error; Acceleration; Aerospace electronics; Equations; Impedance; Joints; Null space; Robots; Disturbance observer; null-space compliance; task-space control;
fLanguage
English
Journal_Title
Robotics, IEEE Transactions on
Publisher
ieee
ISSN
1552-3098
Type
jour
DOI
10.1109/TRO.2013.2291630
Filename
6684300
Link To Document