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Fuzzy Control Systems Design and Analysis: A Linear Matrix Inequality Approach - ISBN 9780471323242

Fuzzy Control Systems Design and Analysis: A Linear Matrix Inequality Approach

ISBN 9780471323242

Autor: Kazuo Tanaka, Hua O. Wang

Wydawca: Wiley

Dostępność: 3-6 tygodni

Cena: 871,50 zł

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ISBN13:      

9780471323242

ISBN10:      

0471323241

Autor:      

Kazuo Tanaka, Hua O. Wang

Oprawa:      

Hardback

Rok Wydania:      

2001-10-05

Ilość stron:      

320

Wymiary:      

246x165

Tematy:      

TBC

A comprehensive treatment of model–based fuzzy control systems
This volume offers full coverage of the systematic framework for the stability and design of nonlinear fuzzy control systems. Building on the Takagi–Sugeno fuzzy model, authors Tanaka and Wang address a number of important issues in fuzzy control systems, including stability analysis, systematic design procedures, incorporation of performance specifications, numerical implementations, and practical applications.
Issues that have not been fully treated in existing texts, such as stability analysis, systematic design, and performance analysis, are crucial to the validity and applicability of fuzzy control methodology. Fuzzy Control Systems Design and Analysis addresses these issues in the framework of parallel distributed compensation, a controller structure devised in accordance with the fuzzy model.
This balanced treatment features an overview of fuzzy control, modeling, and stability analysis, as well as a section on the use of linear matrix inequalities (LMI) as an approach to fuzzy design and control. It also covers advanced topics in model–based fuzzy control systems, including modeling and control of chaotic systems. Later sections offer practical examples in the form of detailed theoretical and experimental studies of fuzzy control in robotic systems and a discussion of future directions in the field.
Fuzzy Control Systems Design and Analysis offers an advanced treatment of fuzzy control that makes a useful reference for researchers and a reliable text for advanced graduate students in the field.

Spis treści:
Preface.
Acronyms.
Introduction.
Takagi–Sugeno Fuzzy Model and Parallel Distributed Compensation.
LMI Control Performance Conditions and Designs.
Fuzzy Observer Design.
Robust Fuzzy Control.
Optimal Fuzzy Control.
Robust–Optimal Fuzzy Control.
Trajectory Control of a Vehicle with Multiple Trailers.
F uzzy Modeling and Control of Chaotic Systems.
Fuzzy Descriptor Systems and Control.
Nonlinear Model Following Control.
New Stability Conditions and Dynamic Feedback Designs.
Multiobjective Control via Dynamic Parallel Distributed Compensation.
T–S Fuzzy Model as Universal Approximator.
Fuzzy Control of Nonlinear Time–Delay Systems.
Index.

Nota biograficzna:
KAZUO TANAKA is Professor in the Department of Mechanical Engineering and Intelligent Systems at the University of Electro–Communications in Tokyo, Japan.
HUA O. WANG is Professor in the Department of Electrical and Computer Engineering at Duke University in Durham, North Carolina.

Okładka tylna:
A comprehensive treatment of model–based fuzzy control systems
This volume offers full coverage of the systematic framework for the stability and design of nonlinear fuzzy control systems. Building on the Takagi–Sugeno fuzzy model, authors Tanaka and Wang address a number of important issues in fuzzy control systems, including stability analysis, systematic design procedures, incorporation of performance specifications, numerical implementations, and practical applications.
Issues that have not been fully treated in existing texts, such as stability analysis, systematic design, and performance analysis, are crucial to the validity and applicability of fuzzy control methodology. Fuzzy Control Systems Design and Analysis addresses these issues in the framework of parallel distributed compensation, a controller structure devised in accordance with the fuzzy model.
This balanced treatment features an overview of fuzzy control, modeling, and stability analysis, as well as a section on the use of linear matrix inequalities (LMI) as an approach to fuzzy design and control. It also covers advanced topics in model–based fuzzy control systems, including modeling and control of chaotic systems. Later sections offer practical examples in the form of detailed theoretical and experimental studies of fuzzy control in robotic systems and a discussion of future directions in the field.
Fuzzy Control Systems Design and Analysis offers an advanced treatment of fuzzy control that makes a useful reference for researchers and a reliable text for advanced graduate students in the field.

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