DocumentCode
2718390
Title
Stability compensation of a mobile manipulator by manipulator motion: feasibility and planning
Author
Huang, Qiang ; Sugano, Shigeki ; Tanie, Kazuo
Author_Institution
Dept. of Robotics, Mech. Eng. Lab., Tsukuba, Japan
Volume
3
fYear
1997
fDate
7-11 Sep 1997
Firstpage
1285
Abstract
In order for a mobile manipulator to move stably (not overturn) and execute the given motions of the end-effect and the vehicle simultaneously, a manipulator must have redundancy. By using this redundancy, it is possible to perform task at an optimal manipulation configuration when the robot is stable, and recovering the system´s stability when the robot is unstable. The ability to recover stability by this manipulator compensation motion is limited. Thus in order to ensure the feasibility of stability compensation, the task plan or vehicle motion must be within this ability. In this paper, first the concept of stability compensation range by static posture change is proposed. Then, within the stability compensation range, the compensation motion of a redundant manipulator considering the manipulation configuration and the system stability is derived, given the motions of the end-effector and the vehicle. Finally, the effectiveness of this method is illustrated by simulation experiments
Keywords
manipulator dynamics; mobile robots; motion compensation; motion control; path planning; redundancy; stability; mobile manipulator; motion control; redundancy; redundant manipulator; stability compensation; Laboratories; Manipulator dynamics; Mechanical engineering; Mobile robots; Motion planning; Orbital robotics; Production facilities; Stability; Trajectory; Vehicle dynamics;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Robots and Systems, 1997. IROS '97., Proceedings of the 1997 IEEE/RSJ International Conference on
Conference_Location
Grenoble
Print_ISBN
0-7803-4119-8
Type
conf
DOI
10.1109/IROS.1997.656417
Filename
656417
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