Finite-Time Task-Space Synchronization of Networked Robotic Manipulators
Zhi Feng, Guoqiang Hu, Yajuan Sun, Jeffrey Bo Woon Soon
- Year
- 2020
- Citations
- 4
Abstract
This paper studies finite-time task-space synchronization of networked manipulators with uncertain kinematics, dynamics and disturbances. Different from [8]-[12] that provide asymptotic convergence and require all the robots to have fully access to the desired global task reference, this paper proposes a distributed estimation and control framework to achieve task-space synchronization in a finite time. In particular, a super-twisting-based distributed estimator is developed firstly for each manipulator to estimate this desired global task reference in a finite time. By incorporating estimated information, a finite-time distributed adaptive control law is further designed to achieve task-space synchronization irrespective of uncertain kinematics and dynamics. To illustrate the effectiveness of proposed design, numerical simulation results are presented.
Keywords
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