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Real-time Iterative Learning Control - Design and Applications (Hardcover, 2009 ed.): Jian-Xin Xu, Sanjib K. Panda, Tong Heng... Real-time Iterative Learning Control - Design and Applications (Hardcover, 2009 ed.)
Jian-Xin Xu, Sanjib K. Panda, Tong Heng Lee
R2,906 Discovery Miles 29 060 Ships in 10 - 15 working days

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 iterative learning control (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:

ILC design in the continuous- and discrete-time domains;

design in the frequency and time domains;

design with problem-specific performance objectives including robustness and optimality;

design in a modular approach by integration with other control techniques; and

design by means of classical tools based on Bode plots and state space.

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.

Iterative Learning Control - Analysis, Design, Integration and Applications (Hardcover, 1998 ed.): Zeungnam Bien, Jian-Xin Xu Iterative Learning Control - Analysis, Design, Integration and Applications (Hardcover, 1998 ed.)
Zeungnam Bien, Jian-Xin Xu
R4,454 Discovery Miles 44 540 Ships in 12 - 17 working days

Iterative Learning Control (ILC) differs from most existing control methods in the sense that, it exploits every possibility to incorporate past control informa tion, such as tracking errors and control input signals, into the construction of the present control action. There are two phases in Iterative Learning Control: first the long term memory components are used to store past control infor mation, then the stored control information is fused in a certain manner so as to ensure that the system meets control specifications such as convergence, robustness, etc. It is worth pointing out that, those control specifications may not be easily satisfied by other control methods as they require more prior knowledge of the process in the stage of the controller design. ILC requires much less information of the system variations to yield the desired dynamic be haviors. Due to its simplicity and effectiveness, ILC has received considerable attention and applications in many areas for the past one and half decades. Most contributions have been focused on developing new ILC algorithms with property analysis. Since 1992, the research in ILC has progressed by leaps and bounds. On one hand, substantial work has been conducted and reported in the core area of developing and analyzing new ILC algorithms. On the other hand, researchers have realized that integration of ILC with other control techniques may give rise to better controllers that exhibit desired performance which is impossible by any individual approach."

Advanced Discrete-Time Control - Designs and Applications (Paperback, Softcover reprint of the original 1st ed. 2015): Khalid... Advanced Discrete-Time Control - Designs and Applications (Paperback, Softcover reprint of the original 1st ed. 2015)
Khalid Abidi, Jian-Xin Xu
R3,414 Discovery Miles 34 140 Ships in 10 - 15 working days

This book covers a wide spectrum of systems such as linear and nonlinear multivariable systems as well as control problems such as disturbance, uncertainty and time-delays. The purpose of this book is to provide researchers and practitioners a manual for the design and application of advanced discrete-time controllers. The book presents six different control approaches depending on the type of system and control problem. The first and second approaches are based on Sliding Mode control (SMC) theory and are intended for linear systems with exogenous disturbances. The third and fourth approaches are based on adaptive control theory and are aimed at linear/nonlinear systems with periodically varying parametric uncertainty or systems with input delay. The fifth approach is based on Iterative learning control (ILC) theory and is aimed at uncertain linear/nonlinear systems with repeatable tasks and the final approach is based on fuzzy logic control (FLC) and is intended for highly uncertain systems with heuristic control knowledge. Detailed numerical examples are provided in each chapter to illustrate the design procedure for each control method. A number of practical control applications are also presented to show the problem solving process and effectiveness with the advanced discrete-time control approaches introduced in this book.

Advanced Discrete-Time Control - Designs and Applications (Hardcover, 2015 ed.): Khalid Abidi, Jian-Xin Xu Advanced Discrete-Time Control - Designs and Applications (Hardcover, 2015 ed.)
Khalid Abidi, Jian-Xin Xu
R4,309 R3,380 Discovery Miles 33 800 Save R929 (22%) Ships in 12 - 17 working days

This book covers a wide spectrum of systems such as linear and nonlinear multivariable systems as well as control problems such as disturbance, uncertainty and time-delays. The purpose of this book is to provide researchers and practitioners a manual for the design and application of advanced discrete-time controllers. The book presents six different control approaches depending on the type of system and control problem. The first and second approaches are based on Sliding Mode control (SMC) theory and are intended for linear systems with exogenous disturbances. The third and fourth approaches are based on adaptive control theory and are aimed at linear/nonlinear systems with periodically varying parametric uncertainty or systems with input delay. The fifth approach is based on Iterative learning control (ILC) theory and is aimed at uncertain linear/nonlinear systems with repeatable tasks and the final approach is based on fuzzy logic control (FLC) and is intended for highly uncertain systems with heuristic control knowledge. Detailed numerical examples are provided in each chapter to illustrate the design procedure for each control method. A number of practical control applications are also presented to show the problem solving process and effectiveness with the advanced discrete-time control approaches introduced in this book.

Iterative Learning Control - Analysis, Design, Integration and Applications (Paperback, Softcover reprint of the original 1st... Iterative Learning Control - Analysis, Design, Integration and Applications (Paperback, Softcover reprint of the original 1st ed. 1998)
Zeungnam Bien, Jian-Xin Xu
R4,260 Discovery Miles 42 600 Ships in 10 - 15 working days

Iterative Learning Control (ILC) differs from most existing control methods in the sense that, it exploits every possibility to incorporate past control informa tion, such as tracking errors and control input signals, into the construction of the present control action. There are two phases in Iterative Learning Control: first the long term memory components are used to store past control infor mation, then the stored control information is fused in a certain manner so as to ensure that the system meets control specifications such as convergence, robustness, etc. It is worth pointing out that, those control specifications may not be easily satisfied by other control methods as they require more prior knowledge of the process in the stage of the controller design. ILC requires much less information of the system variations to yield the desired dynamic be haviors. Due to its simplicity and effectiveness, ILC has received considerable attention and applications in many areas for the past one and half decades. Most contributions have been focused on developing new ILC algorithms with property analysis. Since 1992, the research in ILC has progressed by leaps and bounds. On one hand, substantial work has been conducted and reported in the core area of developing and analyzing new ILC algorithms. On the other hand, researchers have realized that integration of ILC with other control techniques may give rise to better controllers that exhibit desired performance which is impossible by any individual approach.

Real-time Iterative Learning Control - Design and Applications (Paperback, Softcover reprint of hardcover 1st ed. 2009):... Real-time Iterative Learning Control - Design and Applications (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Jian-Xin Xu, Sanjib K. Panda, Tong Heng Lee
R2,765 Discovery Miles 27 650 Ships in 10 - 15 working days

Real-time Iterative Learning Control demonstrates how the latest advances in iterative learning control (ILC) can be applied to a number of plants widely encountered in practice. The book gives a 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 linear and nonlinear plants pervading mechatronics and batch processes are addressed, in particular: ILC design in the continuous- and discrete-time domains; design in the frequency and time domains; design with problem-specific performance objectives including robustness and optimality; design in a modular approach by integration with other control techniques; and design by means of classical tools based on Bode plots and state space.

Linear and Nonlinear Iterative Learning Control (Paperback, 2003 ed.): Jian-Xin Xu, Ying Tan Linear and Nonlinear Iterative Learning Control (Paperback, 2003 ed.)
Jian-Xin Xu, Ying Tan
R4,023 Discovery Miles 40 230 Ships in 10 - 15 working days

This monograph summarizes the recent achievements made in the field of iterative learning control. The book is self-contained in theoretical analysis and can be used as a reference or textbook for a graduate level course as well as for self-study. It opens a new avenue towards a new paradigm in deterministic learning control theory accompanied by detailed examples.

Variable Structure Systems: Towards the 21st Century (Paperback, 2002 ed.): Xing Huo Yu, Jian-Xin Xu Variable Structure Systems: Towards the 21st Century (Paperback, 2002 ed.)
Xing Huo Yu, Jian-Xin Xu
R4,398 Discovery Miles 43 980 Ships in 10 - 15 working days

The book is a collection of papers concerning the theories, applications and perspectives of Variable Structure Systems (VSS), which have been a main control design methodology. The 20th century has seen the formation and consolidation of VSS theory and its applications. It has also seen an emerging trend of cross-fertilization and integration of VSS with other control and non-control areas such as feedback linearization, flatness, passivity based control, adaptive and learning control, system identification, pulse width modulation, geometric and algebraic methods, artificial intelligence, modeling and optimization, neural networks, fuzzy logic, to name just a few. To reflect these major developments in the 20th century, this book includes specially invited surveys and contributions from well-known experts in VSS as well as selected extended papers from the 6th International Workshop on VSS held on the Gold Coast, Australia 7-9 December 2000.

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