Task-Space Sensory Feedback Control of Robot Manipulators / Intelligent Systems, Control and Automation: Science and Engineering Bd.73 (PDF)
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This book presents recent advances in robot control theory on task space sensory feedback control of robot manipulators. By using sensory feedback information, the robot control systems are robust to various uncertainties in modelling and calibration errors of the sensors. Several sensory task space control methods that do not require exact knowledge of either kinematics or dynamics of robots, are presented. Some useful methods such as approximate Jacobian control, adaptive Jacobian control, region control and multiple task space regional feedback are included. These formulations and methods give robots a high degree of flexibility in dealing with unforeseen changes and uncertainties in its kinematics and dynamics, which is similar to human reaching movements and tool manipulation. It also leads to the solution of several long-standing problems and open issues in robot control, such as force control with constraint uncertainty, control of multi-fingered robot hand with uncertain contact points, singularity issue of Jacobian matrix, global task-space control, which are also presented in this book. The target audience for this book includes scientists, engineers and practitioners involved in the field of robot control theory.
Xiang LI received the Bachelor, Master and PhD degrees from Beijing Institute of Technology, and Nanyang Technological University in 2006, 2008, and 2013 respectively. He is currently working as a Research Associate at the Intelligent Robotics Lab, Nanyang Technological University, Singapore. He has served as a reviewer for several international journals including Automatica, IEEE Transactions on Mechatronics, IEEE Transactions on Robotics, and Asian Journal of Control. He is an editor of Journal of Control and Systems Engineering. His current research interests include robot control, visual servoing, and cell manipulation.
- Autoren: Chien Chern Cheah , Xiang Li
- 2015, 2015, 223 Seiten, Englisch
- Verlag: Springer-Verlag GmbH
- ISBN-10: 9812870628
- ISBN-13: 9789812870629
- Erscheinungsdatum: 09.04.2015
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- Größe: 6.36 MB
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