Observer Design for Nonlinear Dynamical Systems

Observer Design for Nonlinear Dynamical Systems
Author: Driss Boutat,Gang Zheng
Publsiher: Springer Nature
Total Pages: 192
Release: 2021-07-02
Genre: Technology & Engineering
ISBN: 9783030737429

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This book presents a differential geometric method for designing nonlinear observers for multiple types of nonlinear systems, including single and multiple outputs, fully and partially observable systems, and regular and singular dynamical systems. It is an exposition of achievements in nonlinear observer normal forms. The book begins by discussing linear systems, introducing the concept of observability and observer design, and then explains the difficulty of those problems for nonlinear systems. After providing foundational information on the differential geometric method, the text shows how to use the method to address observer design problems. It presents methods for a variety of systems. The authors employ worked examples to illustrate the ideas presented. Observer Design for Nonlinear Dynamical Systems will be of interest to researchers, graduate students, and industrial professionals working with control of mechanical and dynamical systems.

Observer Design for Nonlinear Systems

Observer Design for Nonlinear Systems
Author: Pauline Bernard
Publsiher: Springer
Total Pages: 187
Release: 2019-02-01
Genre: Technology & Engineering
ISBN: 9783030111465

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Observer Design for Nonlinear Systems deals with the design of observers for the large class of nonlinear continuous-time models. It contains a unified overview of a broad range of general designs, including the most recent results and their proofs, such as the homogeneous and nonlinear Luenberger design techniques. The book starts from the observation that most observer designs consist in looking for a reversible change of coordinates transforming the expression of the system dynamics into some specific structures, called normal forms, for which an observer is known. Therefore, the problem of observer design is broken down into three sub-problems: • What are the available normal forms and their associated observers?• Under which conditions can a system be transformed into one of these forms and through which transformation? • How can an inverse transformation that recovers an estimate in the given initial coordinates be achieved? This organisation allows the book to structure results within a united framework, highlighting the importance of the choice of the observer coordinates for nonlinear systems. In particular, the first part covers state-affine forms with their Luenberger or Kalman designs, and triangular forms with their homogeneous high-gain designs. The second part addresses the transformation into linear forms through linearization by output injection or in the context of a nonlinear Luenberger design, and into triangular forms under the well-known uniform and differential observability assumptions. Finally, the third part presents some recently developed methods for avoiding the numerically challenging inversion of the transformation. Observer Design for Nonlinear Systems addresses students and researchers looking for an introduction to or an overview of the state of the art in observer design for nonlinear continuous-time dynamical systems. The book gathers the most important results focusing on a large and diffuse literature on general observer designs with global convergence, and is a valuable source of information for academics and practitioners.

Nonlinear Observers and Applications

Nonlinear Observers and Applications
Author: Gildas Besançon
Publsiher: Springer
Total Pages: 224
Release: 2007-10-11
Genre: Technology & Engineering
ISBN: 9783540735038

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The purpose of this fantastically useful book is to lay out an overview on possible tools for state reconstruction in nonlinear systems. Here, basic observability notions and observer structures are recalled, together with ingredients for advanced designs on this basis. The problem of state reconstruction in dynamical systems, known as observer problem, is crucial for controlling or even merely monitoring processes. For linear systems, the theory has been well established for several years, so this book attempts to tackle the problem for non-linear systems.

Control and Observer Design for Nonlinear Finite and Infinite Dimensional Systems

Control and Observer Design for Nonlinear Finite and Infinite Dimensional Systems
Author: Thomas Meurer,Knut Graichen,Ernst-Dieter Gilles
Publsiher: Springer Science & Business Media
Total Pages: 440
Release: 2005-09-19
Genre: Technology & Engineering
ISBN: 3540279385

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This volume presents a well balanced combination of state-of-the-art theoretical results in the field of nonlinear controller and observer design, combined with industrial applications stemming from mechatronics, electrical, (bio–) chemical engineering, and fluid dynamics. The unique combination of results of finite as well as infinite–dimensional systems makes this book a remarkable contribution addressing postgraduates, researchers, and engineers both at universities and in industry. The contributions to this book were presented at the Symposium on Nonlinear Control and Observer Design: From Theory to Applications (SYNCOD), held September 15–16, 2005, at the University of Stuttgart, Germany. The conference and this book are dedicated to the 65th birthday of Prof. Dr.–Ing. Dr.h.c. Michael Zeitz to honor his life – long research and contributions on the fields of nonlinear control and observer design.

Functional Observers for Dynamical Systems

Functional Observers for Dynamical Systems
Author: Hieu Trinh,Tyrone Fernando
Publsiher: Springer Science & Business Media
Total Pages: 226
Release: 2011-09-24
Genre: Technology & Engineering
ISBN: 9783642240638

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The theory of linear functional observers, which is the subject of this book, is increasingly becoming a popular researched topic because of the many advantages it presents in state observation and control system design. This book presents recent information on the current state of the art research in this field. This book will serve as a useful reference to researchers in this area of research to understand the fundamental concepts relevant to the theory of functional observers and to gather most recent advancements in the field. This book is useful to academics and postgraduate students researching into the theory of linear functional observers. This book can also be useful for specialized final year undergraduate courses in control systems engineering and applied mathematics with a research focus.

Advances in Observer Design and Observation for Nonlinear Systems

Advances in Observer Design and Observation for Nonlinear Systems
Author: Omar Naifar,Abdellatif Ben Makhlouf
Publsiher: Springer Nature
Total Pages: 200
Release: 2022-02-01
Genre: Technology & Engineering
ISBN: 9783030927318

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This book discusses various methods for designing different kinds of observers, such as the Luenberger observer, unknown input observers, discontinuous observers, sliding mode observers, observers for impulsive systems, observers for nonlinear Takagi-Sugeno fuzzy systems, and observers for electrical machines. A hydraulic process system and a renewable energy system are provided as examples of applications.

Intelligent Observer and Control Design for Nonlinear Systems

Intelligent Observer and Control Design for Nonlinear Systems
Author: Dierk Schröder
Publsiher: Springer Science & Business Media
Total Pages: 346
Release: 2013-04-17
Genre: Technology & Engineering
ISBN: 9783662041178

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This application-oriented monograph focuses on a novel and complex type of control systems. Written on an engineering level, including fundamentals, advanced methods and applications, the book applies techniques originating from new methods such as artificial intelligence, fuzzy logic, neural networks etc.

Intelligent Observer and Control Design for Nonlinear Systems

Intelligent Observer and Control Design for Nonlinear Systems
Author: Dierk Schröder
Publsiher: Springer Science & Business Media
Total Pages: 358
Release: 2000-01-07
Genre: Language Arts & Disciplines
ISBN: 3540636390

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Control theory of nonlinear systems, in which either the linear part is known but the relevant nonlinearities in place, kind or parameters are unknown, or both the linear and the nonlinear parts are partially or even most unknown, is a new, demanding and highly interesting field. This book treats the problem by focussing on the role of learning. Intelligent learning techniques are able to determine the unknown components of nonlinear systems. These processes are always stable and convergent. The methods presented can be used both on-line and off-line. They have applications in mechatronics, hydraulics and combustion engines.