3D Motion of Rigid Bodies : A Foundation for Robot Dynamics Analysis / by Ernesto Olguín Díaz.
By: Olguín Díaz, Ernesto, autor
Contributor(s): SpringerLink (Online service)
Series: (Studies in Systems Decision and Control, 2198-4182; 191); (Intelligent Technologies and Robotics (Springer-42732)).Publisher: Cham : Imprint: Springer, 2019Description: 1 recurso en línea (XXIII, 474 páginas).ISBN: 9783030042752.Subject: Robots
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TJ211.4 2019 EB (Browse shelf(Opens below)) | Acceso electrónico | eBooks26062252 |
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| TJ211.4 2018 EB Advances in Robot Kinematics 2016 | TJ211.4 2018 EB Dynamic Decoupling of Robot Manipulators | TJ211.4 2019 EB Biomechanics of anthropomorphic systems | TJ211.4 2019 EB 3D Motion of Rigid Bodies : A Foundation for Robot Dynamics Analysis | TJ211.4 2019 EB Advances in robot kinematics 2018 | TJ211.4 2020 EB Motion control of biomimetic swimming robots | TJ211.4 2021 EB Novel Bioinspired Actuator Designs for Robotics |
Mathematic Foundations -- Classical Mechanics -- Rigid Motion -- Attitude Representations -- Dynamics of a Rigid Body -- Spacial Vectors Approach -- Lagrangian Formulation -- Model reduction under motion constraint.
This book offers an excellent complementary text for an advanced course on the modelling and dynamic analysis of multi-body mechanical systems, and provides readers an in-depth understanding of the modelling and control of robots. While the Lagrangian formulation is well suited to multi-body systems, its physical meaning becomes paradoxically complicated for single rigid bodies. Yet the most advanced numerical methods rely on the physics of these single rigid bodies, whose dynamic is then given among multiple formulations by the set of the Newton-Euler equations in any of their multiple expression forms. This book presents a range of simple tools to express in succinct form the dynamic equation for the motion of a single rigid body, either free motion (6-dimension), such as that of any free space navigation robot or constrained motion (less than 6-dimension), such as that of ground or surface vehicles. In the process, the book also explains the equivalences of (and differences between) the different formulations.
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