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Block Backstepping Design of Nonlinear State Feedback Control Law for Underactuated Mechanical Systems (Hardcover, 1st ed.... Block Backstepping Design of Nonlinear State Feedback Control Law for Underactuated Mechanical Systems (Hardcover, 1st ed. 2017)
Shubhobrata Rudra, Ranjit Kumar Barai, Madhubanti Maitra
R3,257 Discovery Miles 32 570 Ships in 12 - 17 working days

This book presents a novel, generalized approach to the design of nonlinear state feedback control laws for a large class of underactuated mechanical systems based on application of the block backstepping method. The control law proposed here is robust against the effects of model uncertainty in dynamic and steady-state performance and addresses the issue of asymptotic stabilization for the class of underactuated mechanical systems. An underactuated system is defined as one for which the dimension of space spanned by the configuration vector is greater than that of the space spanned by the control variables. Control problems concerning underactuated systems currently represent an active field of research due to their broad range of applications in robotics, aerospace, and marine contexts. The book derives a generalized theory of block backstepping control design for underactuated mechanical systems, and examines several case studies that cover interesting examples of underactuated mechanical systems. The mathematical derivations are described using well-known notations and simple algebra, without the need for any special previous background in higher mathematics. The chapters are lucidly described in a systematic manner, starting with control system preliminaries and moving on to a generalized description of the block backstepping method, before turning to several case studies. Simulation and experimental results are also provided to aid in reader comprehension.

Hydraulically Actuated Hexapod Robots - Design, Implementation and Control (Hardcover, 2014 ed.): Kenzo Nonami, Ranjit Kumar... Hydraulically Actuated Hexapod Robots - Design, Implementation and Control (Hardcover, 2014 ed.)
Kenzo Nonami, Ranjit Kumar Barai, Addie Irawan, Mohd Razali Daud
R4,412 R3,409 Discovery Miles 34 090 Save R1,003 (23%) Ships in 12 - 17 working days

Legged robots are a promising locomotion system, capable of performing tasks that conventional vehicles cannot. Even more exciting is the fact that this is a rapidly developing field of study for researchers from a variety of disciplines. However, only a few books have been published on the subject of multi-legged robots. The main objective of this book is to describe some of the major control issues concerning walking robots that the authors have faced over the past 10 years. A second objective is to focus especially on very large hydraulically driven hexapod robot locomotion weighing more than 2,000 kg, making this the first specialized book on this topic. The 10 chapters of the book touch on diverse relevant topics such as design aspects, implementation issues, modeling for control, navigation and control, force and impedance control-based walking, fully autonomous walking, walking and working tasks of hexapod robots, and the future of walking robots. The construction machines of the future will very likely resemble hydraulically driven hexapod robots like the ones described in this book - no longer science fiction but now a reality.

Block Backstepping Design of Nonlinear State Feedback Control Law for Underactuated Mechanical Systems (Paperback, Softcover... Block Backstepping Design of Nonlinear State Feedback Control Law for Underactuated Mechanical Systems (Paperback, Softcover reprint of the original 1st ed. 2017)
Shubhobrata Rudra, Ranjit Kumar Barai, Madhubanti Maitra
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This book presents a novel, generalized approach to the design of nonlinear state feedback control laws for a large class of underactuated mechanical systems based on application of the block backstepping method. The control law proposed here is robust against the effects of model uncertainty in dynamic and steady-state performance and addresses the issue of asymptotic stabilization for the class of underactuated mechanical systems. An underactuated system is defined as one for which the dimension of space spanned by the configuration vector is greater than that of the space spanned by the control variables. Control problems concerning underactuated systems currently represent an active field of research due to their broad range of applications in robotics, aerospace, and marine contexts. The book derives a generalized theory of block backstepping control design for underactuated mechanical systems, and examines several case studies that cover interesting examples of underactuated mechanical systems. The mathematical derivations are described using well-known notations and simple algebra, without the need for any special previous background in higher mathematics. The chapters are lucidly described in a systematic manner, starting with control system preliminaries and moving on to a generalized description of the block backstepping method, before turning to several case studies. Simulation and experimental results are also provided to aid in reader comprehension.

Hydraulically Actuated Hexapod Robots - Design, Implementation and Control (Paperback, Softcover reprint of the original 1st... Hydraulically Actuated Hexapod Robots - Design, Implementation and Control (Paperback, Softcover reprint of the original 1st ed. 2014)
Kenzo Nonami, Ranjit Kumar Barai, Addie Irawan, Mohd Razali Daud
R3,575 Discovery Miles 35 750 Ships in 10 - 15 working days

Legged robots are a promising locomotion system, capable of performing tasks that conventional vehicles cannot. Even more exciting is the fact that this is a rapidly developing field of study for researchers from a variety of disciplines. However, only a few books have been published on the subject of multi-legged robots. The main objective of this book is to describe some of the major control issues concerning walking robots that the authors have faced over the past 10 years. A second objective is to focus especially on very large hydraulically driven hexapod robot locomotion weighing more than 2,000 kg, making this the first specialized book on this topic. The 10 chapters of the book touch on diverse relevant topics such as design aspects, implementation issues, modeling for control, navigation and control, force and impedance control-based walking, fully autonomous walking, walking and working tasks of hexapod robots, and the future of walking robots. The construction machines of the future will very likely resemble hydraulically driven hexapod robots like the ones described in this book – no longer science fiction but now a reality.

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