<p><P>Iterative learning control (ILC) has been a major control design methodology for twenty years; numerous algorithms have been developed to solve real-time control problems, from MEMS to batch reactors, characterised by repetitive control operations.</P><P><EM>Real-time Iterative Learning Contro
Real-time Iterative Learning Control: Design and Applications
β Scribed by Jian-Xin Xu, Sanjib K. Panda, Tong Heng Lee (auth.)
- Publisher
- Springer-Verlag London
- Year
- 2009
- Tongue
- English
- Leaves
- 201
- Series
- Advances in Industrial Control
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Iterative learning control (ILC) has been a major control design methodology for twenty years; numerous algorithms have been developed to solve real-time control problems, from MEMS to batch reactors, characterised by repetitive control operations.
Real-time Iterative Learning Control demonstrates how the latest advances in ILC can be applied to a number of plants widely encountered in practice. The authors provide a hitherto lacking systematic introduction to real-time ILC design and source of illustrative case studies for ILC problem solving; the fundamental concepts, schematics, configurations and generic guidelines for ILC design and implementation are enhanced by a well-selected group of representative, simple and easy-to-learn example applications. Key issues in ILC design and implementation in the linear and nonlinear plants that pervade mechatronics and batch processes are addressed. In particular, the book discusses:
β’ ILC design in the continuous- and discrete-time domains;
β’ design in the frequency and time domains;
β’ design with problem-specific performance objectives including robustness and optimality;
β’ design by means of classical tools based on Bode plots and state space; and
β’ iterative-learning-based parametric identification.
Real-time Iterative Learning Control will interest control engineers looking for examples of how this important control technique can be applied to a variety of real-life problems. With its systematic formulation and analysis of different system properties and performance and its exposition of open problems, academics and graduate students working in control will find it a useful reference to the current status of ILC.
β¦ Table of Contents
Front Matter....Pages i-xvi
Introduction....Pages 1-5
Introduction to ILC: Concepts, Schematics, and Implementation....Pages 7-28
Robust Optimal ILC Design for Precision Servo: Application to an XY Table....Pages 29-45
ILC for Precision Servo with Input Non-linearities: Application to a Piezo Actuator....Pages 47-63
ILC for Process Temperature Control: Application to a Water-heating Plant....Pages 65-83
ILC with Robust Smith Compensator: Application to a Furnace Reactor....Pages 85-100
Plug-in ILC Design for Electrical Drives: Application to a PM Synchronous Motor....Pages 101-120
ILC for Electrical Drives: Application to a Switched Reluctance Motor....Pages 121-140
Optimal Tuning of PID Controllers Using Iterative Learning Approach....Pages 141-167
Calibration of Micro-robot Inverse Kinematics Using Iterative Learning Approach....Pages 169-180
Conclusion....Pages 181-182
Back Matter....Pages 183-194
β¦ Subjects
Control , Robotics, Mechatronics; Industrial Chemistry/Chemical Engineering; Manufacturing, Machines, Tools; Engineering Design; Electronics and Microelectronics, Instrumentation
π SIMILAR VOLUMES
<p>Iterative Learning Control (ILC) differs from most existing control methods in the sense that, it exploits every possibility to incorporate past control informaΒ tion, such as tracking errors and control input signals, into the construction of the present control action. There are two phases in I
This book provides readers with a comprehensive coverage of iterative learning control. The book can be used as a text or reference for a course at graduate level and is also suitable for self-study and for industry-oriented courses of continuing education.Ranging from aerodynamic curve identificati
<p>This book provides readers with a comprehensive coverage of iterative learning control. The book can be used as a text or reference for a course at graduate level and is also suitable for self-study and for industry-oriented courses of continuing education.<BR>Ranging from aerodynamic curve ident
An ideal textbook for instructional designers in training,<i>Real World Instructional Design</i>emphasizes the collaborative, iterative nature of instructional design. Positing instructional design as a process of simultaneous rather than sequential tasks with learner-centered outcomes, this volume