Presenting the most recent research on the state of robot technology, particularly the control of robotic movement, this collection of articles discusses serial and parallel robots, direct- and inverse-geometric and kinetic models, computer architecture for modeling, and the design of mechanical joints. Vision-based control of robots is introduced as a new area of experimentation, and problems with flexible links, position setting, and vibration damping are also analyzed.
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Etienne Dombre is director of research at the National Centre for Scientific Research (CNRS) in Paris and a researcher at the Laboratoire de Recherche en Informatique, Robotique et Microélectronique de Montpellier at the University of Montpellier. Wisama Khalil is a professor at the École Centrale–Nantes.
This book presents the most recent research results on modeling and control of robot manipulators.
Chapter 1 gives unified tools to derive direct and inverse geometric, kinematic and dynamic models of serial robots and addresses the issue of identification of the geometric and dynamic parameters of these models.
Chapter 2 describes the main features of serial robots, the different architectures and the methods used to obtain direct and inverse geometric, kinematic and dynamic models, paying special attention to singularity analysis.
Chapter 3 introduces global and local tools for performance analysis of serial robots.
Chapter 4 presents an original optimization technique for point-to-point trajectory generation accounting for robot dynamics.
Chapter 5 presents standard control techniques in the joint space and task space for free motion (PID, computed torque, adaptive dynamic control and variable structure control) and constrained motion (compliant force-position control).
In Chapter 6, the concept of vision-based control is developed and Chapter 7 is devoted to specific issue of robots with flexible links. Efficient recursive Newton-Euler algorithms for both inverse and direct modeling are presented, as well as control methods ensuring position setting and vibration damping.
Le informazioni nella sezione "Su questo libro" possono far riferimento a edizioni diverse di questo titolo.
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Hardcover. Condizione: new. Hardcover. This book presents the most recent research results on modeling and control of robot manipulators. Chapter 1 gives unified tools to derive direct and inverse geometric, kinematic and dynamic models of serial robots and addresses the issue of identification of the geometric and dynamic parameters of these models.Chapter 2 describes the main features of serial robots, the different architectures and the methods used to obtain direct and inverse geometric, kinematic and dynamic models, paying special attention to singularity analysis.Chapter 3 introduces global and local tools for performance analysis of serial robots.Chapter 4 presents an original optimization technique for point-to-point trajectory generation accounting for robot dynamics.Chapter 5 presents standard control techniques in the joint space and task space for free motion (PID, computed torque, adaptive dynamic control and variable structure control) and constrained motion (compliant force-position control).In Chapter 6, the concept of vision-based control is developed and Chapter 7 is devoted to specific issue of robots with flexible links. Efficient recursive Newton-Euler algorithms for both inverse and direct modeling are presented, as well as control methods ensuring position setting and vibration damping. This book presents the most recent research results on modeling and control of robot manipulators. *Chapter 1 gives unified tools to derive direct and inverse geometric, kinematic and dynamic models of serial robots and addresses the issue of identification of the geometric and dynamic parameters of these models. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Codice articolo 9781905209101
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