Modeling Identification and Control of Robots

Modeling Identification and Control of Robots
Title Modeling Identification and Control of Robots PDF eBook
Author Wisama Khalil
Publisher CRC Press
Total Pages 508
Release 2002
Genre Robots
ISBN 9781560329831

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Modeling, Identification and Control of Robots

Modeling, Identification and Control of Robots
Title Modeling, Identification and Control of Robots PDF eBook
Author W. Khalil
Publisher Butterworth-Heinemann
Total Pages 503
Release 2004-07-01
Genre Computers
ISBN 0080536611

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Written by two of Europe’s leading robotics experts, this book provides the tools for a unified approach to the modelling of robotic manipulators, whatever their mechanical structure. No other publication covers the three fundamental issues of robotics: modelling, identification and control. It covers the development of various mathematical models required for the control and simulation of robots. · World class authority· Unique range of coverage not available in any other book· Provides a complete course on robotic control at an undergraduate and graduate level

Epz Modeling Identification and Control of Robots

Epz Modeling Identification and Control of Robots
Title Epz Modeling Identification and Control of Robots PDF eBook
Author W. Khalil
Publisher
Total Pages
Release 2005-01-01
Genre
ISBN 9781903996751

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Kinematic Modeling, Identification, and Control of Robotic Manipulators

Kinematic Modeling, Identification, and Control of Robotic Manipulators
Title Kinematic Modeling, Identification, and Control of Robotic Manipulators PDF eBook
Author Henry W. Stone
Publisher Springer Science & Business Media
Total Pages 258
Release 1987-09-30
Genre Technology & Engineering
ISBN 9780898382372

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The objective of this dissertation is to advance the state-of-the-art in the kinematic modeling, identification, and control of robotic manipulators with rigid links in an effort to improve robot kinematic performance. The positioning accuracy of commercially-available industrial robotic manipulators depends upon a kinematic model which describes the robot geometry in a parametric form. Manufacturing error in the machining and assembly of manipulators lead to discrepancies between the design parameters and the physical structure. Improving the kinematic perfor mance thus requires the identification of the actual kinematic parameters of each individual robot. The identified kinematic parameters are referred to as the arm signature. Existing robot kinematic models, such as the Denavit-Hartenberg model, are not directly applicable to kinematic parameter identification. In this dissertation we introduce a new kinematic model, called the 5-Model, which is applicable to kinematic parameter identification, and use it as the foundation for our development of a general technique for identifying the kinematic parameters of any robot with rigid links.

Kinematic Modeling, Identification, and Control of Robotic Manipulators

Kinematic Modeling, Identification, and Control of Robotic Manipulators
Title Kinematic Modeling, Identification, and Control of Robotic Manipulators PDF eBook
Author Henry W. Stone
Publisher Springer Science & Business Media
Total Pages 236
Release 2012-12-06
Genre Technology & Engineering
ISBN 1461319994

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The objective of this dissertation is to advance the state-of-the-art in the kinematic modeling, identification, and control of robotic manipulators with rigid links in an effort to improve robot kinematic performance. The positioning accuracy of commercially-available industrial robotic manipulators depends upon a kinematic model which describes the robot geometry in a parametric form. Manufacturing error in the machining and assembly of manipulators lead to discrepancies between the design parameters and the physical structure. Improving the kinematic perfor mance thus requires the identification of the actual kinematic parameters of each individual robot. The identified kinematic parameters are referred to as the arm signature. Existing robot kinematic models, such as the Denavit-Hartenberg model, are not directly applicable to kinematic parameter identification. In this dissertation we introduce a new kinematic model, called the 5-Model, which is applicable to kinematic parameter identification, and use it as the foundation for our development of a general technique for identifying the kinematic parameters of any robot with rigid links.

Robotics

Robotics
Title Robotics PDF eBook
Author Bruno Siciliano
Publisher Springer Science & Business Media
Total Pages 644
Release 2010-08-20
Genre Technology & Engineering
ISBN 1846286417

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Based on the successful Modelling and Control of Robot Manipulators by Sciavicco and Siciliano (Springer, 2000), Robotics provides the basic know-how on the foundations of robotics: modelling, planning and control. It has been expanded to include coverage of mobile robots, visual control and motion planning. A variety of problems is raised throughout, and the proper tools to find engineering-oriented solutions are introduced and explained. The text includes coverage of fundamental topics like kinematics, and trajectory planning and related technological aspects including actuators and sensors. To impart practical skill, examples and case studies are carefully worked out and interwoven through the text, with frequent resort to simulation. In addition, end-of-chapter exercises are proposed, and the book is accompanied by an electronic solutions manual containing the MATLAB® code for computer problems; this is available free of charge to those adopting this volume as a textbook for courses.

Modelling and Control of Robot Manipulators

Modelling and Control of Robot Manipulators
Title Modelling and Control of Robot Manipulators PDF eBook
Author Lorenzo Sciavicco
Publisher Springer Science & Business Media
Total Pages 391
Release 2012-12-06
Genre Technology & Engineering
ISBN 1447104498

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Fundamental and technological topics are blended uniquely and developed clearly in nine chapters with a gradually increasing level of complexity. A wide variety of relevant problems is raised throughout, and the proper tools to find engineering-oriented solutions are introduced and explained, step by step. Fundamental coverage includes: Kinematics; Statics and dynamics of manipulators; Trajectory planning and motion control in free space. Technological aspects include: Actuators; Sensors; Hardware/software control architectures; Industrial robot-control algorithms. Furthermore, established research results involving description of end-effector orientation, closed kinematic chains, kinematic redundancy and singularities, dynamic parameter identification, robust and adaptive control and force/motion control are provided. To provide readers with a homogeneous background, three appendices are included on: Linear algebra; Rigid-body mechanics; Feedback control. To acquire practical skill, more than 50 examples and case studies are carefully worked out and interwoven through the text, with frequent resort to simulation. In addition, more than 80 end-of-chapter exercises are proposed, and the book is accompanied by a solutions manual containing the MATLAB code for computer problems; this is available from the publisher free of charge to those adopting this work as a textbook for courses.