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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

Synchronization (alternating current)Convergence (economics)Computer scienceKinematicsTask (project management)Robot kinematicsControl theory (sociology)RobotEstimatorAdaptive control

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