Normal view MARC view ISBD view

Modern anti-windup synthesis / Luca Zaccarian, Andrew R. Teel.

By: Zaccarian, Luca.
Contributor(s): Teel, Andrew R, 1965-.
Material type: materialTypeLabelBookSeries: Princeton series in applied mathematics: Publisher: Princeton : Princeton University Press, 2011Description: 1 online resource (xiv, 288 pages) : illustrations.Content type: text Media type: computer Carrier type: online resourceISBN: 9781400839025; 1400839025.Subject(s): Automatic control -- Mathematical models | Linear control systems | Actuators | Commande automatique -- Mod�eles math�ematiques | Commande lin�eaire | Actionneurs | TECHNOLOGY & ENGINEERING -- Automation | TECHNOLOGY & ENGINEERING -- Robotics | MATHEMATICS -- Applied | Actuators | Automatic control -- Mathematical models | Linear control systemsGenre/Form: Electronic books. | Electronic books.Additional physical formats: Print version:: Modern anti-windup synthesis.DDC classification: 629.8/3 Online resources: Click here to access online
Contents:
Frontmatter -- Contents -- Preface -- Arlgorithms Summary -- Chapter One. The Windup Phenomenon and Anti-windup Illustrated -- Chapter Two. Anti-windup: Definitions, Objectives, and Architectures -- Chapter Three. Analysis and Synthesis of Feedback Systems: Quadratic Functions and LMIs -- Chapter Four. Static Linear Anti-windup Augmentation -- Chapter Five. Dynamic Linear Anti-windup Augmentation -- Chapter Six. The MRAW Framework -- Chapter Seven. Linear MRAW Synthesis -- Chapter Eight. Nonlinear MRAVV Synthesis -- Chapter Nine. The MRAVV Structure Applied to Other Problems -- Chapter Ten. Anti-windup for Euler-Lagrange Plants -- Chapter Eleven. Annotated Bibliography -- Index.
Summary: "This book provides a wide variety of state-space--based numerical algorithms for the synthesis of feedback algorithms for linear systems with input saturation. Specifically, it addresses and solves the anti-windup problem, presenting the objectives and terminology of the problem, the mathematical tools behind anti-windup algorithms, and more than twenty algorithms for anti-windup synthesis, illustrated with examples. Luca Zaccarian and Andrew Teel's modern method--combining a state-space approach with algorithms generated by solving linear matrix inequalities--treats MIMO and SISO systems with equal ease. The book, aimed at control engineers as well as graduate students, ranges from very simple anti-windup construction to sophisticated anti-windup algorithms for nonlinear systems. Describes the fundamental objectives and principles behind anti-windup synthesis for control systems with actuator saturation takes a modern, state-space approach to synthesis that applies to both SISO and MIMO systems presents algorithms as linear matrix inequalities that can be readily solved with widely available software explains mathematical concepts that motivate synthesis algorithms uses nonlinear performance curves to quantify performance relative to disturbances of varying magnitudes Includes anti-windup algorithms for a class of Euler-Lagrange nonlinear systems traces the history of anti-windup research through an extensive annotated bibliography"-- Provided by publisher
    average rating: 0.0 (0 votes)
No physical items for this record

"This book provides a wide variety of state-space--based numerical algorithms for the synthesis of feedback algorithms for linear systems with input saturation. Specifically, it addresses and solves the anti-windup problem, presenting the objectives and terminology of the problem, the mathematical tools behind anti-windup algorithms, and more than twenty algorithms for anti-windup synthesis, illustrated with examples. Luca Zaccarian and Andrew Teel's modern method--combining a state-space approach with algorithms generated by solving linear matrix inequalities--treats MIMO and SISO systems with equal ease. The book, aimed at control engineers as well as graduate students, ranges from very simple anti-windup construction to sophisticated anti-windup algorithms for nonlinear systems. Describes the fundamental objectives and principles behind anti-windup synthesis for control systems with actuator saturation takes a modern, state-space approach to synthesis that applies to both SISO and MIMO systems presents algorithms as linear matrix inequalities that can be readily solved with widely available software explains mathematical concepts that motivate synthesis algorithms uses nonlinear performance curves to quantify performance relative to disturbances of varying magnitudes Includes anti-windup algorithms for a class of Euler-Lagrange nonlinear systems traces the history of anti-windup research through an extensive annotated bibliography"-- Provided by publisher

Includes bibliographical references (pages 271-284) and index.

Print version record.

Frontmatter -- Contents -- Preface -- Arlgorithms Summary -- Chapter One. The Windup Phenomenon and Anti-windup Illustrated -- Chapter Two. Anti-windup: Definitions, Objectives, and Architectures -- Chapter Three. Analysis and Synthesis of Feedback Systems: Quadratic Functions and LMIs -- Chapter Four. Static Linear Anti-windup Augmentation -- Chapter Five. Dynamic Linear Anti-windup Augmentation -- Chapter Six. The MRAW Framework -- Chapter Seven. Linear MRAW Synthesis -- Chapter Eight. Nonlinear MRAVV Synthesis -- Chapter Nine. The MRAVV Structure Applied to Other Problems -- Chapter Ten. Anti-windup for Euler-Lagrange Plants -- Chapter Eleven. Annotated Bibliography -- Index.

In English.

Copyright � Princeton University Press 2011 2011

IEEE IEEE Xplore Princeton University Press eBooks Library

There are no comments for this item.

Log in to your account to post a comment.