The purpose of this monograph is to present computationally efficient algorithms for solving basic problems in robot manipulator dynamics. In par- ticular, the following problems of rigid-link open-chain manipulator dynam- ics are considered : i) computation of inverse dynamics, ii) computation of forward dynamics, and iii) generation of linearized dynamic models. Com- putationally efficient solutions of these problems are prerequisites for real- time robot applications and simulations.
Cartesian tensor analysis is the mathematical foundation on which the above mentioned computational algorithms are based. In particular, it is shown in this monograph that by exploiting the relationships between second order Cartesian tensors and their vector invariants, a number of new tensor- vector identities can be obtained. These identities enrich the theory of Carte- sian tensors and allow us to manipulate complex Cartesian tensor equations effuctively.
Moreover, based on these identities the classical vector descrip- tion for the Newton-Euler equations of rigid body motion are rewritten in an equivalent tensor formulation which is shown to have computational advan- tages over the classical vector formulation. Thus, based on Cartesian tensor analysis, a conceptually simple, easy to implement and computationally efficient tensor methodology is presented in this monograph for studying classical rigid body dynamics.
XlI Application of this tensor methodology to the dynamic analysis of rigid-link open-chain robot manipulators is simple and leads to an efficient fonnulation of the dynamic equations of motion.
| ISBN: | 9780792391456 |
| Publication date: | 31st March 1991 |
| Author: | C A Balafoutis, R V Patel |
| Publisher: | Springer an imprint of Springer US |
| Format: | Hardback |
| Pagination: | 292 pages |
| Series: | The Kluwer International Series in Engineering and Computer Science |
| Genres: |
Automatic control engineering Electrical engineering |
The purpose of this monograph is to present computationally efficient algorithms for solving basic problems in robot manipulator dynamics. In par- ticular, the following problems of rigid-link open-chain manipulator dynam- ics are considered : i) computation of inverse dynamics, ii) computation of forward dynamics, and iii) generation of linearized dynamic models.
Dynamic Analysis of Robot Manipulators features in the following genres: Automatic control engineering, Electrical engineering
Hardback. Not Available.
Dynamic Analysis of Robot Manipulators was written by C A Balafoutis, R V Patel and published by Springer an imprint of Springer US
Dynamic Analysis of Robot Manipulators has 292 pages
Yes it is part of The Kluwer International Series in Engineering and Computer Science series