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Hybrid position and force control of two industrial robots manipulating a flexible sheet: theory and experiment

Dong Sun, James K. Mills, Yunhui Liu

Year
2002
Citations
3

Abstract

This paper verifies that the widely used PD plus a force control scheme is also suitable for controlling a system of two industrial robots manipulating a flexible sheet. It is proven by LaSalle's theorem that under the proposed control law, the desired rigid body motion can be achieved and the vibrations of the sheet at each contact are suppressed simultaneously. The offsets of all static deformations of the sheet with reference to the original positions decay to zero. The internal forces between the payload and the robots are well controlled to avoid any damage to the system. The investigation is based on the decomposition of the payload dynamics into two distinct dynamic subsystems, using a "clamped-free" model. The experiments on two CRS A460 robots manipulating a flexible aluminum sheet confirm these theoretical predictions.

Keywords

Payload (computing)RobotPosition (finance)Control theory (sociology)Computer scienceVibrationControl engineeringVibration controlEngineeringControl (management)

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