Structural Methods in the Study of Complex Systems (eBook)

Artikelnummer: 978-3-030-18572-5
Einband: PDF
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Structural Methods in the Study of Complex Systems helps the reader respond to the challenge of mastering complexity in systems and control. The book details the fundamental control problems arising from complex dynamical systems and shows how they can be tackled effectively by means of methods developed from graph theory, differential algebra and geometric approaches. These "structural methods" produce abstractions that fit a wide variety of applications by taking advantage of their intrinsic focus on the essential characteristics of dynamical systems, their geometric perspective and visual representation, and their algebraic formalization and ability to generate algorithmic frameworks to complement the theoretical treatment.

The original work and latest achievements of the contributors, expanding on material presented at a workshop organized to coincide with the 2018 European Control Conference will assist systems and control scientists interested in developing theoretical and computational tools to solve analysis and synthesis problems involving complex dynamical systems. The contributions provide a comprehensive picture of available results along with a stimulating view of possible directions for future investigations in the field. Emphasis is placed on methods with solid computational background and on specific engineering applications so that readers from both theoretical and practical backgrounds will find this collection of use.

Structural Methods in the Study of Complex Systems helps the reader respond to the challenge of mastering complexity in systems and control. The book details the fundamental control problems arising from complex dynamical systems and shows how they can be tackled effectively by means of methods developed from graph theory, differential algebra and geometric approaches. These "structural methods" produce abstractions that fit a wide variety of applications by taking advantage of their intrinsic focus on the essential characteristics of dynamical systems, their geometric perspective and visual representation, and their algebraic formalization and ability to generate algorithmic frameworks to complement the theoretical treatment.

The original work and latest achievements of the contributors, expanding on material presented at a workshop organized to coincide with the 2018 European Control Conference will assist systems and control scientists interested in developing theoretical and computational tools to solve analysis and synthesis problems involving complex dynamical systems. The contributions provide a comprehensive picture of available results along with a stimulating view of possible directions for future investigations in the field. Emphasis is placed on methods with solid computational background and on specific engineering applications so that readers from both theoretical and practical backgrounds will find this collection of use.

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VerlagSpringer International Publishing
EinbandPDF
Erscheinungsjahr2019
Seitenangabe279 S.
AusgabekennzeichenEnglisch
AbbildungenXX, 279 p. 106 illus., 30 illus. in color.
Masse7'010 KB
PlattformPDF
ReiheLecture Notes in Control and Information Sciences
AutorZattoni, Elena (Hrsg.) / Perdon, Anna Maria (Hrsg.) / Conte, Giuseppe (Hrsg.)

Alle Bände der Reihe "Lecture Notes in Control and Information Sciences"

Über den Autor Elena (Hrsg.) Zattoni

Elena Zattoni received the Laurea degree cum Laude in Electronics Engineering in 1995 and the Ph.D. in Systems Engineering in 1999 from the University of Bologna, Italy. She is Associate Professor in Automatic Control at the Alma Mater Studiorum Università di Bologna. She has been a Visiting Professor at Leuphana University of Lüneburg, Aalto University, University of Michigan, Institut de Recherche en Communications et Cybernétique de Nantes, and Brown University. Her research interests are focused on geometric and structural approaches to control systems, including hybrid systems and time-delay systems, with applications to the synthesis of enhanced-reliability control systems. She has authored more than one hundred and fifty papers in journals, conference proceedings and books. She has co-edited the book "Structural Methods in the Study of Complex Systems". She is the General Chair of the "1st IFAC Workshop on Control of Complex Systems (COSY 2022)" and she has been theGeneral Chair of the ''15th European Workshop on Advanced Control and Diagnosis (ACD 2019)''. She is a member of the IFAC TC on Linear Control Systems. She is a Senior Member of IEEE and she has served on the Member Activity Board of the IEEE Control Systems Society.Silvio Simani was born in Ferrara in 1971. He received his Laurea degree (cum laude) in Electronic Engineering from the Department of Engineering at the University of Ferrara, Italy, in 1996, and was awarded the Ph.D. in Information Science (Automatic Control) at the Department of Engineering of the University of Ferrara and Modena, Italy, in 2000. Since February 2002 he was Assistant Professor at the Department of Engineering of the University of Ferrara, and since December 2018 he has been Professor of Automatic Control at the same Department. Since 1999 he is member of the IFAC Technical Committee 6.4 on Fault Detection, Supervision and Safety for Technical Processes (SAFEPROCESS), and vice-chair of the same TC from 2018. Since 1998 he is member of the IEEE Society, and since 2016 he is Senior Member IEEE. Prof. Simani has published more than 260 refereed journal and conference papers, several book's chapters, and four monographs. His research interests include fault diagnosis and fault tolerant control of linear and nonlinear dynamic processes, system modelling, identification and data analysis, linear and nonlinear filtering techniques, fuzzy logic and neural networks for modelling and control, as well as the interaction issues among identification, fault diagnosis, fault tolerant and sustainable control. These techniques have been applied to power plants, renewable energy conversion systems, aircraft and spacecraft processes.Giuseppe Conte received the Laurea with Honors in Mathematics from the University of Genoa, Italy, in 1974. He is currently Professor of Automation at the Polytechnic University of Marche, Ancona, Italy. He has been Visiting Researcher/Professor at the Ohio State Univesity and the Ecole Centrale de Nantes. His research interests are in algebraic and geometric systems and control theory and in robotics. He has authored more than three hundred papers in journals, conference proceedings and books, he co-edited four books and he co-authored the research monograph Algebraic Methods for Nonlinear Control Systems. Theory and Applications (London, UK: Springer Verlag 2007). He served on the editorial boards of several journals, as Program Chair and General Chair of systems and control conferences and currently serves as Associate Editor of IMA Journal of Mathematical Control and Information. Prof. Conte was Chairman of the IFAC Technical Committee on Linear Control Systems and Chairman of the Italian Chapter of the IEEE Control Systems Society.

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