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NASA NTRS · 19940004714

Approximate minimum-time trajectories for two-link flexible manipulators

Abstract

The method of recursive quadratic programming was used to generate approximate minimum-time tip trajectories for two-link semi-rigid and flexible manipulator movements in the horizontal plane. The manipulator is modeled with an efficient finite-element scheme for an n-link, m-joint system with bending only in the horizontal plane. Constraints on the trajectory include boundary conditions on position and energy for a rest-to-rest maneuver, straight-line tracking between boundary positions, and motor torque limits. Trajectory comparisons utilize a change in the link stiffness to compare a semi-rigid configuration to a flexible one. The level of bending flexibility necessary to excite significant modal behavior is demonstrated. Applied torques for minimum-time maneuvers are shown to be very similar between configurations and retain much of the qualitative character of rigid-body slewing motion.

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BibTeXRIS

Eisler, G. R., Segalman, D. J., Robinett, R. D.. 1990-01-01. Approximate minimum-time trajectories for two-link flexible manipulators. https://ntrs.nasa.gov/citations/19940004714

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