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Multi-Robot Trajectory Planning and Position/Force Coordination Control in Complex Welding Tasks

Yahui Gan, Jinjun Duan, Ming Chen, Xianzhong Dai

Year
2019
Citations
31
Access
Open access

Abstract

In this paper, the trajectory planning and position/force coordination control of multi-robot systems during the welding process are discussed. Trajectory planning is the basis of the position/ force cooperative control, an object-oriented hierarchical planning control strategy is adopted firstly, which has the ability to solve the problem of complex coordinate transformation, welding process requirement and constraints, etc. Furthermore, a new symmetrical internal and external adaptive variable impedance control is proposed for position/force tracking of multi-robot cooperative manipulators. Based on this control approach, the multi-robot cooperative manipulator is able to track a dynamic desired force and compensate for the unknown trajectory deviations, which result from external disturbances and calibration errors. In the end, the developed control scheme is experimentally tested on a multi-robot setup which is composed of three ESTUN industrial manipulators by welding a pipe-contact-pipe object. The simulations and experimental results are strongly proved that the proposed approach can finish the welding task smoothly and achieve a good position/force tracking performance.

Keywords

Control theory (sociology)TrajectoryRobot weldingPosition (finance)Control engineeringRobotComputer scienceImpedance controlProcess (computing)Engineering

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