DocumentCode
1323798
Title
Intermediate Desired Value Approach for Task Transition of Robots in Kinematic Control
Author
Lee, Jaemin ; Mansard, Nicolas ; Park, Jaeheung
Author_Institution
Dept. of Intell. Convergence Syst., Seoul Nat. Univ., Suwon, South Korea
Volume
28
Issue
6
fYear
2012
Firstpage
1260
Lastpage
1277
Abstract
The task-based control framework is well established for its ability to generate complex behavior in versatile robots. When executing multiple complex tasks, continuous and stable transition among these tasks is one of the most important issues. In this paper, the problem of task transition is discussed to achieve continuous transitions between arbitrary tasks effectively. Instead of modifying the control laws, the design of intermediate desired values to be realized by existing controllers is proposed. The proposed approach can deal with arbitrary task sets, with or without priorities, for insertion and removal, and with priority rearrangement for hierarchical sets of tasks. The solution is generic and can be used for any type of transition. Two examples of uses include a time-driven transition to execute a given task schedule and a transition depending on the robot configuration to perform joint-limit avoidance behaviors. The performance of the algorithm is verified in simulations and on a physical robot.
Keywords
collision avoidance; robot kinematics; arbitrary task sets; continuous transition; intermediate desired value approach; joint-limit avoidance behavior; kinematic control; robot configuration; stable transition; task schedule; task transition; task-based control; time-driven transition; Humanoid robots; Intelligent robots; Robot kinematics; Visual servoing; Hierarchy of tasks; humanoid robot; inverse kinematics; task sequencing; task-based control;
fLanguage
English
Journal_Title
Robotics, IEEE Transactions on
Publisher
ieee
ISSN
1552-3098
Type
jour
DOI
10.1109/TRO.2012.2210293
Filename
6334480
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