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Pid Trajectory Tracking Control For Mechanical Systems


Pid Trajectory Tracking Control For Mechanical Systems
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Pid Trajectory Tracking Control For Mechanical Systems


Pid Trajectory Tracking Control For Mechanical Systems
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Author : Youngjin Choi
language : en
Publisher: Springer
Release Date : 2014-03-12

Pid Trajectory Tracking Control For Mechanical Systems written by Youngjin Choi and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2014-03-12 with Technology & Engineering categories.


Though PID control has a long history as much as its life force since Ziegler and Nichols published the empirical tuning rules in 1942, surprisingly, it has never been changed in the structure itself. The strength of PID control lies in the simplicity, lucid meaning, and clear e?ect. Though it must be a widely - cepted controller for mechanical control systems, it is still short of theoretical bases,e.g., optimality, performance tuning rules, automatic performance t- ing method, and output feedback PID control have not been clearly presented formechanicalcontrolsystems.Thesesubjectswillbethoroughlydiscussedin this book. There are many books of PID controller for the purpose of process control, but it is hard to ?nd a book on the characteristics of PID control for mechanical systems. In the ?rst place, when nonlinear optimal control theory is applied to mechanical systems, a class of Hamilton-Jacobi (HJ) equations is derived as a result of optimization. There are two methods to solve a class of HJ eq- tions: a direct method using an approximation and inverse method ?nding the performance index from a class of HJ equations. Also, there are two control methods according to the objective: the set-point regulation control and t- jectory tracking control. The trajectory tracking control is basically di?erent from set-point regulation one in that the desired con?guration, velocity and acceleration pro?les according to time progress are added to the motion of mechanical system. This book is focusing on an inverse optimization method and the trajectory tracking control system.



Pid Trajectory Tracking Control For Mechanical Systems


Pid Trajectory Tracking Control For Mechanical Systems
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Author : Youngjin Choi
language : en
Publisher: Springer Science & Business Media
Release Date : 2004-01-23

Pid Trajectory Tracking Control For Mechanical Systems written by Youngjin Choi and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004-01-23 with Technology & Engineering categories.


Though PID control has a long history as much as its life force since Ziegler and Nichols published the empirical tuning rules in 1942, surprisingly, it has never been changed in the structure itself. The strength of PID control lies in the simplicity, lucid meaning, and clear e?ect. Though it must be a widely - cepted controller for mechanical control systems, it is still short of theoretical bases,e.g., optimality, performance tuning rules, automatic performance t- ing method, and output feedback PID control have not been clearly presented formechanicalcontrolsystems.Thesesubjectswillbethoroughlydiscussedin this book. There are many books of PID controller for the purpose of process control, but it is hard to ?nd a book on the characteristics of PID control for mechanical systems. In the ?rst place, when nonlinear optimal control theory is applied to mechanical systems, a class of Hamilton-Jacobi (HJ) equations is derived as a result of optimization. There are two methods to solve a class of HJ eq- tions: a direct method using an approximation and inverse method ?nding the performance index from a class of HJ equations. Also, there are two control methods according to the objective: the set-point regulation control and t- jectory tracking control. The trajectory tracking control is basically di?erent from set-point regulation one in that the desired con?guration, velocity and acceleration pro?les according to time progress are added to the motion of mechanical system. This book is focusing on an inverse optimization method and the trajectory tracking control system.



Perturbation Compensator Based Robust Tracking Control And State Estimation Of Mechanical Systems


Perturbation Compensator Based Robust Tracking Control And State Estimation Of Mechanical Systems
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Author : SangJoo Kwon
language : en
Publisher: Springer Science & Business Media
Release Date : 2004-07-07

Perturbation Compensator Based Robust Tracking Control And State Estimation Of Mechanical Systems written by SangJoo Kwon and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004-07-07 with Technology & Engineering categories.


This monograph investigates a practical way to achieve robust motion control and state estimation (Kalman filtering) of mechanical systems, which is a promising approach in terms of the perturbation compensator. The book presents novel approaches for design and analysis of perturbation observers as well as an extension to robust motion control and robust state estimation. The book is written in a self-contained manner including experimental results in each chapter clearly validating the developed theories.



Motion Control Of Underactuated Mechanical Systems


Motion Control Of Underactuated Mechanical Systems
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Author : Javier Moreno-Valenzuela
language : en
Publisher: Springer
Release Date : 2017-07-11

Motion Control Of Underactuated Mechanical Systems written by Javier Moreno-Valenzuela and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-07-11 with Technology & Engineering categories.


This volume is the first to present a unified perspective on the control of underactuated mechanical systems. Based on real-time implementation of parameter identification, this book provides a variety of algorithms for the Furuta pendulum and the inertia wheel pendulum, which are two-degrees-of-freedom mechanical systems. Specifically, this work addresses and solves the problem of motion control via trajectory tracking in one joint coordinate while another joint is regulated. Besides, discussions on extensions to higher degrees-of-freedom systems are given. The book, aimed at control engineers as well as graduate students, ranges from the problem of parameter identification of the studied systems to the practical implementation of sophisticated motion control algorithms. Offering real-world solutions to manage the control of underactuated systems, this book provides a concise tutorial on recent breakthroughs in the field, original procedures to achieve bounding of the error trajectories, convergence and gain tuning guidelines.



Robotic Mechanical Systems Fundamentals


Robotic Mechanical Systems Fundamentals
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Author : Shridhar Shastri
language : en
Publisher: Educohack Press
Release Date : 2025-02-20

Robotic Mechanical Systems Fundamentals written by Shridhar Shastri and has been published by Educohack Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2025-02-20 with Technology & Engineering categories.


"Robotic Mechanical Systems Fundamentals" serves as a comprehensive guide to understanding the core principles and technological intricacies of robotic systems in today’s rapidly evolving landscape. We offer an in-depth exploration of the mechanical foundations that drive the design, control, and functionality of robots, making it an essential resource for students, researchers, and industry professionals. Our journey begins with a thorough examination of the fundamental concepts and historical developments that shape robotics. Readers will gain insights into the dynamics of robotic systems through the Newton-Euler equations, paving the way for a deeper understanding of the Lagrange formulation, which offers a powerful framework for analyzing robot motion. Focusing on dynamic modeling, we provide a detailed look at the mechanisms governing the behavior of manipulators, emphasizing the complexities involved in designing and controlling robotic arms. Additionally, we address control forces and torques, highlighting strategies to ensure precision and efficiency in robotic actions. With a holistic approach that considers the ethical and societal implications of robotics, "Robotic Mechanical Systems Fundamentals" balances theoretical foundations with practical applications, making it accessible for beginners and valuable for seasoned professionals. Authored by experts, our book equips readers to navigate the fascinating world of robotics, inspiring a deeper appreciation for the technologies that shape our future.



Springer Handbook Of Robotics


Springer Handbook Of Robotics
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Author : Bruno Siciliano
language : en
Publisher: Springer
Release Date : 2016-07-27

Springer Handbook Of Robotics written by Bruno Siciliano and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-07-27 with Technology & Engineering categories.


The second edition of this handbook provides a state-of-the-art overview on the various aspects in the rapidly developing field of robotics. Reaching for the human frontier, robotics is vigorously engaged in the growing challenges of new emerging domains. Interacting, exploring, and working with humans, the new generation of robots will increasingly touch people and their lives. The credible prospect of practical robots among humans is the result of the scientific endeavour of a half a century of robotic developments that established robotics as a modern scientific discipline. The ongoing vibrant expansion and strong growth of the field during the last decade has fueled this second edition of the Springer Handbook of Robotics. The first edition of the handbook soon became a landmark in robotics publishing and won the American Association of Publishers PROSE Award for Excellence in Physical Sciences & Mathematics as well as the organization’s Award for Engineering & Technology. The second edition of the handbook, edited by two internationally renowned scientists with the support of an outstanding team of seven part editors and more than 200 authors, continues to be an authoritative reference for robotics researchers, newcomers to the field, and scholars from related disciplines. The contents have been restructured to achieve four main objectives: the enlargement of foundational topics for robotics, the enlightenment of design of various types of robotic systems, the extension of the treatment on robots moving in the environment, and the enrichment of advanced robotics applications. Further to an extensive update, fifteen new chapters have been introduced on emerging topics, and a new generation of authors have joined the handbook’s team. A novel addition to the second edition is a comprehensive collection of multimedia references to more than 700 videos, which bring valuable insight into the contents. The videos can be viewed directly augmented into the text with a smartphone or tablet using a unique and specially designed app. Springer Handbook of Robotics Multimedia Extension Portal: http://handbookofrobotics.org/



Advanced Strategies In Control Systems With Input And Output Constraints


Advanced Strategies In Control Systems With Input And Output Constraints
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Author : Sophie Tarbouriech
language : en
Publisher: Springer Science & Business Media
Release Date : 2007-07-13

Advanced Strategies In Control Systems With Input And Output Constraints written by Sophie Tarbouriech and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2007-07-13 with Technology & Engineering categories.


Physical, safety and technological constraints suggest that control actuators can neither provide unlimited amplitude signals nor unlimited speed of reaction. The techniques described in this book are useful for industrial applications in aeronautical or space domains, and in the context of biological systems. Such methods are well suited for the development of tools that help engineers to solve analysis and synthesis problems of control systems with input and output constraints.



Control Reconfiguration Of Dynamical Systems


Control Reconfiguration Of Dynamical Systems
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Author : Thomas Steffen
language : en
Publisher: Springer Science & Business Media
Release Date : 2005-08-31

Control Reconfiguration Of Dynamical Systems written by Thomas Steffen and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2005-08-31 with Technology & Engineering categories.


Reconfiguration, an approach for fault-tolerant control, involves changing the control structure in response to the fault. This monograph extends this idea to actuator faults and studies in detail the so-called virtual actuator approach. "Control Reconfiguration of Dynamical Systems" also introduces structural analysis as a tool for reconfiguration. Because a fault changes the structure of the system, the reconfiguration solution is sought on a structural level. Novel algorithms are presented to test for reconfigurability and to find a reconfiguration solution. A MATLAB toolbox is supplied, which contains the main algorithms and examples. The book addresses advanced engineering students, developers and researchers that have a specific interest in control reconfiguration.



Control Of Underactuated Mechanical Systems


Control Of Underactuated Mechanical Systems
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Author : Afef Hfaiedh
language : en
Publisher: Academic Press
Release Date : 2025-04-01

Control Of Underactuated Mechanical Systems written by Afef Hfaiedh and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2025-04-01 with Technology & Engineering categories.


Control of Underactuated Mechanical Systems: Stabilization and Limit Cycle Generationclearly explains stabilization and limit cycle generation in underactuated mechanical systems (UMS),addressing control design challenges and demonstrating concepts through real-time experiments.The book begins with advancements in UMS, introducing key concepts such as stabilization and limitcycle generation, supported by literature examples. It then focuses on the inertia wheel invertedpendulum, presenting a detailed discussion. The second part tackles stabilization, offering variouscontrol solutions validated through numerical simulations and real-time experiments. The finalpart addresses stable limit cycle generation, detailing three proposed control solutions and theirvalidation through different case studies.This book is a valuable resource for PhD and Master students, engineers, researchers, and educators.It provides guidance in robotics and automatic control, utilizing a simplified methodology forcontrolling underactuated mechanical systems. - • Addresses stabilization and stable limit cycle generation in underactuated mechanical systemsamid perturbations• Explores the design, development, and validation of robust control solutions• Illustrates concepts through case studies• Validates control solutions with numerical simulations and real-time experiments



Explicit Stability Conditions For Continuous Systems


Explicit Stability Conditions For Continuous Systems
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Author : Michael I. Gil
language : en
Publisher: Springer Science & Business Media
Release Date : 2005-03-17

Explicit Stability Conditions For Continuous Systems written by Michael I. Gil and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2005-03-17 with Technology & Engineering categories.


Explicit Stability Conditions for Continuous Systems deals with non-autonomous linear and nonlinear continuous finite dimensional systems. Explicit conditions for the asymptotic, absolute, input-to-state and orbital stabilities are discussed. This monograph provides new tools for specialists in control system theory and stability theory of ordinary differential equations, with a special emphasis on the Aizerman problem. A systematic exposition of the approach to stability analysis based on estimates for matrix-valued functions is suggested and various classes of systems are investigated from a unified viewpoint.