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Dynamics of Tree-Type Robotic Systems / by Suril Vijaykumar Shah, Subir Kumar Saha, Jayanta Kumar Dutt.

Por: Colaborador(es): Tipo de material: TextoTextoSeries Intelligent Systems, Control and Automation: Science and Engineering ; 62Editor: Dordrecht : Springer Netherlands : Imprint: Springer, 2013Descripción: xii, 251 páginas 145 ilustraciones, 19 ilustraciones en color. recurso en líneaTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9789400750067
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • TJ210.2-211.495
Recursos en línea:
Contenidos:
1 Introduction -- 2 Dynamics of Robotic Systems -- 3 Euler-Angle-Joints (EAJs) -- 4 Kinematics of Tree-Type Robotic Systems -- 5 Dynamics of Tree-Type Robotic Systems -- 6 Recursive Dynamics for Fixed-Base Robotic Systems -- 7 Recursive Dynamics for Floating-Base Systems -- 8 Closed-Loop Systems -- 9 Controlled Robotic Systems -- 10 Recursive Dynamics Simulator (ReDySim) -- Appendices -- References.-Index.
Resumen: This book addresses dynamic modelling methodology and analyses of tree-type robotic systems. Such analyses are required to visualize the motion of a system without really building it. The book contains novel treatment of the tree-type systems using concept of kinematic modules and the corresponding Decoupled Natural Orthogonal Complements (DeNOC), unified representation of the multiple-degrees-of freedom-joints, efficient recursive dynamics algorithms, and detailed dynamic analyses of several legged robots. The book will help graduate students, researchers and practicing engineers in applying their knowledge of dynamics for analysis of complex robotic systems. The knowledge contained in the book will help one in virtual testing of robot operation, trajectory planning and control.
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Springer eBooks

1 Introduction -- 2 Dynamics of Robotic Systems -- 3 Euler-Angle-Joints (EAJs) -- 4 Kinematics of Tree-Type Robotic Systems -- 5 Dynamics of Tree-Type Robotic Systems -- 6 Recursive Dynamics for Fixed-Base Robotic Systems -- 7 Recursive Dynamics for Floating-Base Systems -- 8 Closed-Loop Systems -- 9 Controlled Robotic Systems -- 10 Recursive Dynamics Simulator (ReDySim) -- Appendices -- References.-Index.

This book addresses dynamic modelling methodology and analyses of tree-type robotic systems. Such analyses are required to visualize the motion of a system without really building it. The book contains novel treatment of the tree-type systems using concept of kinematic modules and the corresponding Decoupled Natural Orthogonal Complements (DeNOC), unified representation of the multiple-degrees-of freedom-joints, efficient recursive dynamics algorithms, and detailed dynamic analyses of several legged robots. The book will help graduate students, researchers and practicing engineers in applying their knowledge of dynamics for analysis of complex robotic systems. The knowledge contained in the book will help one in virtual testing of robot operation, trajectory planning and control.

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