Unifying Robot Arm Control
- 1 November 1984
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Industry Applications
- Vol. IA-20 (6) , 1554-1563
- https://doi.org/10.1109/TIA.1984.4504641
Abstract
A unified approach to three stages of robot arm control is presented based on the Newton-Euler equations of motion. The stages unified are resolved motion, gross motion, and fine motion. Apart from the conceptual advantage, this unification can require less computation than if the three stages are computed separately. In particular, fewer computations are required for arms with no more than about a dozen joints (a number unlikely to be exceeded for most arms, at least in the near future). Computation times are estimated assuming the computing elements are fabricated from current (very large-scale integrated circuit) (VLSIC) technology. It is also shown how friction can be incorporated into the unified approach. The concept of "pseudo-force" is introduced to relate fine motion to the Newton-Euler equations.Keywords
This publication has 7 references indexed in Scilit:
- Manipulator compliance based on joint torque controlPublished by Institute of Electrical and Electronics Engineers (IEEE) ,1980
- On-Line Computational Scheme for Mechanical ManipulatorsJournal of Dynamic Systems, Measurement, and Control, 1980
- Resolved-acceleration control of mechanical manipulatorsIEEE Transactions on Automatic Control, 1980
- A Recursive Lagrangian Formulation of Maniputator Dynamics and a Comparative Study of Dynamics Formulation ComplexityIEEE Transactions on Systems, Man, and Cybernetics, 1980
- An algorithm for planning collision-free paths among polyhedral obstaclesCommunications of the ACM, 1979
- Manipulator Cartesian Path ControlIEEE Transactions on Systems, Man, and Cybernetics, 1979
- Resolved Motion Rate Control of Manipulators and Human ProsthesesIEEE Transactions on Systems, Man, and Cybernetics: Systems, IEEE Transactions on Cybernetics, and IEEE Transactions on Human-Machine Systems, 1969